메뉴 건너뛰기




Volumn 58, Issue 4, 2013, Pages 383-502

Mechanically alloyed nanocomposites

Author keywords

[No Author keywords available]

Indexed keywords

AGE HARDENING; CERAMIC MATERIALS; DISPERSIONS; HARDENING; HIGH STRENGTH ALLOYS; INTERNAL OXIDATION; MECHANICAL ALLOYING; NANOCOMPOSITES; POWDER METALS; PRECIPITATION (CHEMICAL);

EID: 84870457707     PISSN: 00796425     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.pmatsci.2012.10.001     Document Type: Review
Times cited : (685)

References (418)
  • 1
    • 0003423914 scopus 로고
    • An introduction to metal matrix composites
    • Cambridge University Press
    • [1] Clyne, T.W., Withers, P.J., An introduction to metal matrix composites. 1995, Cambridge University Press.
    • (1995)
    • Clyne, T.W.1    Withers, P.J.2
  • 2
    • 0003888857 scopus 로고    scopus 로고
    • An Introduction to composite materials
    • 2nd ed. Cambridge University Press New York
    • [2] Hull, D., Clyne, T.W., An Introduction to composite materials. 2nd ed., 1996, Cambridge University Press, New York.
    • (1996)
    • Hull, D.1    Clyne, T.W.2
  • 3
    • 84929868997 scopus 로고    scopus 로고
    • Metal matrix composites
    • Springer New York
    • [3] Chawla, N., Chawla, K.K., Metal matrix composites. 2005, Springer, New York.
    • (2005)
    • Chawla, N.1    Chawla, K.K.2
  • 4
    • 85115939640 scopus 로고    scopus 로고
    • Composite materials science and engineering
    • 3rd ed. Springer New York
    • [4] Chawla, K.K., Composite materials science and engineering. 3rd ed., 2009, Springer, New York.
    • (2009)
    • Chawla, K.K.1
  • 5
    • 0034249959 scopus 로고    scopus 로고
    • Microstructural and mechanical characteristics of in situ metal matrix composites
    • [5] Tjong, S.C., Ma, Z.Y., Microstructural and mechanical characteristics of in situ metal matrix composites. Mater Sci Eng Reports R29 (2000), 49–113.
    • (2000) Mater Sci Eng Reports , vol.R29 , pp. 49-113
    • Tjong, S.C.1    Ma, Z.Y.2
  • 6
    • 27644509348 scopus 로고    scopus 로고
    • Metal matrix composites – from science to technological significance
    • [6] Miracle, D.B., Metal matrix composites – from science to technological significance. Compos Sci Technol 65 (2005), 2526–2540.
    • (2005) Compos Sci Technol , vol.65 , pp. 2526-2540
    • Miracle, D.B.1
  • 7
    • 34548312379 scopus 로고    scopus 로고
    • Novel nanoparticle-reinforced metal matrix composites with enhanced mechanical properties
    • [7] Tjong, S.C., Novel nanoparticle-reinforced metal matrix composites with enhanced mechanical properties. Adv Eng Mater 9 (2007), 639–652.
    • (2007) Adv Eng Mater , vol.9 , pp. 639-652
    • Tjong, S.C.1
  • 8
    • 3242722879 scopus 로고    scopus 로고
    • Study on bulk aluminum matrix nano-composite fabricated by ultrasonic dispersion of nano-sized SiC particles in molten aluminum alloy
    • [8] Yang, Y., Lan, J., Li, X., Study on bulk aluminum matrix nano-composite fabricated by ultrasonic dispersion of nano-sized SiC particles in molten aluminum alloy. Mater Sci Eng A A380 (2004), 378–383.
    • (2004) Mater Sci Eng A , vol.A380 , pp. 378-383
    • Yang, Y.1    Lan, J.2    Li, X.3
  • 9
    • 0000898239 scopus 로고
    • Dispersion strengthening of copper by internal oxidation
    • [9] Preston, O., Grant, N.J., Dispersion strengthening of copper by internal oxidation. Trans Metall Soc AIME 221 (1961), 164–173.
    • (1961) Trans Metall Soc AIME , vol.221 , pp. 164-173
    • Preston, O.1    Grant, N.J.2
  • 10
    • 0032520411 scopus 로고    scopus 로고
    • Alumina particles in a copper matrix formed by aluminizing and internal oxidation
    • [10] Shi, Z., Wang, D., Alumina particles in a copper matrix formed by aluminizing and internal oxidation. J Mater Sci Lett 17 (1998), 477–479.
    • (1998) J Mater Sci Lett , vol.17 , pp. 477-479
    • Shi, Z.1    Wang, D.2
  • 11
    • 34147094670 scopus 로고    scopus 로고
    • Polymer nanocomposites: processing, characterization, and applications
    • McGraw-Hill Professional
    • [11] Koo, J., Polymer nanocomposites: processing, characterization, and applications. 2006, McGraw-Hill Professional.
    • (2006)
    • Koo, J.1
  • 12
    • 85130404205 scopus 로고    scopus 로고
    • Polymer nanocomposites handbook
    • CRC Press Boca Raton (FL)
    • [12] Gupta, R.K., Kennel, E., Kim, K.J., Polymer nanocomposites handbook. 2009, CRC Press, Boca Raton (FL).
    • (2009)
    • Gupta, R.K.1    Kennel, E.2    Kim, K.J.3
  • 13
    • 85055779032 scopus 로고    scopus 로고
    • Multifunctional polymer nanocomposites
    • CRC Press Boca Raton (FL)
    • [13] Leng, J.S., Lau, A.K., Multifunctional polymer nanocomposites. 2010, CRC Press, Boca Raton (FL).
    • (2010)
    • Leng, J.S.1    Lau, A.K.2
  • 14
    • 0002645810 scopus 로고
    • Mechanical alloying
    • [14] Benjamin, J.S., Mechanical alloying. Sci Am 234:5 (1976), 40–48.
    • (1976) Sci Am , vol.234 , Issue.5 , pp. 40-48
    • Benjamin, J.S.1
  • 15
    • 0026980954 scopus 로고
    • Mechanical alloying – history and future potential
    • J.M. Capus R.M. German et al. (eds.) Metal Powder Industries Federation Princeton (NJ)
    • [15] Benjamin, J.S., Mechanical alloying – history and future potential. Capus, J.M., German, R.M., et al. (eds.) Advances in powder metallurgy and particulate materials Novel powder processing, vol. 7, 1992, Metal Powder Industries Federation, Princeton (NJ), 155–168.
    • (1992) Advances in powder metallurgy and particulate materials, Novel powder processing , vol.7 , pp. 155-168
    • Benjamin, J.S.1
  • 16
    • 0034742774 scopus 로고    scopus 로고
    • Mechanical alloying and milling
    • [16] Suryanarayana, C., Mechanical alloying and milling. Prog Mater Sci 46 (2001), 1–184.
    • (2001) Prog Mater Sci , vol.46 , pp. 1-184
    • Suryanarayana, C.1
  • 17
    • 85055773611 scopus 로고    scopus 로고
    • Mechanical alloying and milling
    • Marcel Dekker New York (NY)
    • [17] Suryanarayana, C., Mechanical alloying and milling. 2004, Marcel Dekker, New York (NY).
    • (2004)
    • Suryanarayana, C.1
  • 18
    • 0022776188 scopus 로고
    • The preparation of amorphous Ni–Zr powder by grinding the crystalline alloy
    • [18] Weeber, A.W., Bakker, H., deBoer, F.R., The preparation of amorphous Ni–Zr powder by grinding the crystalline alloy. Europhys Lett 2 (1986), 445–448.
    • (1986) Europhys Lett , vol.2 , pp. 445-448
    • Weeber, A.W.1    Bakker, H.2    deBoer, F.R.3
  • 19
    • 0016565464 scopus 로고
    • Preparation and properties of dispersion hardened aluminum
    • [19] Jangg, G., Kuttner, F., Korb, G., Preparation and properties of dispersion hardened aluminum. Aluminium 51 (1975), 641–645.
    • (1975) Aluminium , vol.51 , pp. 641-645
    • Jangg, G.1    Kuttner, F.2    Korb, G.3
  • 20
    • 0003613746 scopus 로고
    • Reaction milling of aluminum alloys
    • E. Arzt L. Schultz DGM Informationgesellschaft Oberursel (Germany)
    • [20] Jangg, G., Reaction milling of aluminum alloys. Arzt, E., Schultz, L., (eds.) New materials by mechanical alloying techniques, 1989, DGM Informationgesellschaft, Oberursel (Germany), 39–52.
    • (1989) New materials by mechanical alloying techniques , pp. 39-52
    • Jangg, G.1
  • 21
    • 0002499262 scopus 로고
    • Cryomilling of nano-phase dispersion strengthened aluminum
    • L.E. McCandlsih D.E. Polk R.W. Siegel B.H. Kear Mater Res Soc. Pittsburgh (PA)
    • [21] Luton, M.J., Jayanth, C.S., Disko, M.M., Matras, M.M., Vallone, J., Cryomilling of nano-phase dispersion strengthened aluminum. McCandlsih, L.E., Polk, D.E., Siegel, R.W., Kear, B.H., (eds.) Multicomponent ultrafine microstructures, vol. 132, 1989, Mater Res Soc., Pittsburgh (PA), 79–86.
    • (1989) Multicomponent ultrafine microstructures , vol.132 , pp. 79-86
    • Luton, M.J.1    Jayanth, C.S.2    Disko, M.M.3    Matras, M.M.4    Vallone, J.5
  • 22
    • 25644437027 scopus 로고    scopus 로고
    • Synthesis and mechanical behavior of nanostructured materials via cryomilling
    • [22] Witkin, D.B., Lavernia, E.J., Synthesis and mechanical behavior of nanostructured materials via cryomilling. Prog Mater Sci 51 (2006), 1–60.
    • (2006) Prog Mater Sci , vol.51 , pp. 1-60
    • Witkin, D.B.1    Lavernia, E.J.2
  • 23
    • 85040803656 scopus 로고
    • Tribochemistry
    • Hanser Publishers Munchen
    • [23] Heinicke, G., Tribochemistry. 1984, Hanser Publishers, Munchen.
    • (1984)
    • Heinicke, G.1
  • 24
    • 27344442239 scopus 로고    scopus 로고
    • Mechanical alloying and mechanically induced chemical reactions
    • K.A. Jr. Gschneidner L. Eyring Elsevier Sci BV Amsterdam
    • [24] McCormick, P.G., Mechanical alloying and mechanically induced chemical reactions. Gschneidner, K.A. Jr., Eyring, L., (eds.) Handbook on the physics and chemistry of rare earths, vol. 24, 1997, Elsevier Sci BV, Amsterdam, 47–81.
    • (1997) Handbook on the physics and chemistry of rare earths , vol.24 , pp. 47-81
    • McCormick, P.G.1
  • 25
    • 0004080339 scopus 로고    scopus 로고
    • Mechanochemistry of materials
    • Cambridge International Science Publishing Cambridge (UK)
    • [25] Gutman, E.M., Mechanochemistry of materials. 1998, Cambridge International Science Publishing, Cambridge (UK).
    • (1998)
    • Gutman, E.M.1
  • 26
    • 0003799998 scopus 로고    scopus 로고
    • Soft mechanochemical synthesis: a basis for new chemical technologies
    • Springer Boston (MA)
    • [26] Avvakumov, E.G., Senna, M., Kosova, N.V., Soft mechanochemical synthesis: a basis for new chemical technologies. 2001, Springer, Boston (MA).
    • (2001)
    • Avvakumov, E.G.1    Senna, M.2    Kosova, N.V.3
  • 27
    • 0035999839 scopus 로고    scopus 로고
    • Self-sustaining reactions induced by ball milling
    • [27] Takacs, L., Self-sustaining reactions induced by ball milling. Prog Mater Sci 47 (2002), 355–414.
    • (2002) Prog Mater Sci , vol.47 , pp. 355-414
    • Takacs, L.1
  • 28
    • 33748985011 scopus 로고    scopus 로고
    • Mechanochemistry and mechanical activation of solids
    • [28] Boldyrev, V.V., Mechanochemistry and mechanical activation of solids. Russ Chem Rev 75 (2006), 177–189.
    • (2006) Russ Chem Rev , vol.75 , pp. 177-189
    • Boldyrev, V.V.1
  • 29
    • 84892797971 scopus 로고    scopus 로고
    • Mechanochemistry in nanoscience and minerals engineering
    • Springer Berlin
    • [29] Baláž, P., Mechanochemistry in nanoscience and minerals engineering. 2008, Springer, Berlin.
    • (2008)
    • Baláž, P.1
  • 31
    • 84982201819 scopus 로고    scopus 로고
    • Mechanochemical synthesis of nanocrystalline metal powders
    • I.T. Chang Y. Zhao Woodhead Publishing Ltd. Oxford (UK)
    • [31] Suryanarayana, C., Ivanov, E., Mechanochemical synthesis of nanocrystalline metal powders. Chang, I.T., Zhao, Y., (eds.) Advances in powder metallurgy, 2012, Woodhead Publishing Ltd., Oxford (UK).
    • (2012) Advances in powder metallurgy
    • Suryanarayana, C.1    Ivanov, E.2
  • 32
    • 0002642535 scopus 로고
    • Reduction of metal oxides by mechanical alloying
    • [32] Schaffer, G.B., McCormick, P.G., Reduction of metal oxides by mechanical alloying. Appl Phys Lett 55 (1989), 45–46.
    • (1989) Appl Phys Lett , vol.55 , pp. 45-46
    • Schaffer, G.B.1    McCormick, P.G.2
  • 33
    • 0025501097 scopus 로고
    • Displacement reactions during mechanical alloying
    • [33] Schaffer, G.B., McCormick, P.G., Displacement reactions during mechanical alloying. Metall Trans A A21 (1990), 2789–2794.
    • (1990) Metall Trans A , vol.A21 , pp. 2789-2794
    • Schaffer, G.B.1    McCormick, P.G.2
  • 34
    • 0026838532 scopus 로고
    • Reduction of magnetite by aluminum: a displacement reaction induced by mechanical alloying
    • [34] Takacs, L., Reduction of magnetite by aluminum: a displacement reaction induced by mechanical alloying. Mater Lett 13 (1992), 119–124.
    • (1992) Mater Lett , vol.13 , pp. 119-124
    • Takacs, L.1
  • 35
    • 51249162023 scopus 로고
    • On the kinetics of mechanical alloying
    • [35] Schaffer, G.B., McCormick, P.G., On the kinetics of mechanical alloying. Metall Trans A A23 (1992), 1285–1290.
    • (1992) Metall Trans A , vol.A23 , pp. 1285-1290
    • Schaffer, G.B.1    McCormick, P.G.2
  • 37
    • 0019080574 scopus 로고
    • Identification of dispersoid phases created in aluminum during mechanical alloying
    • [37] Singer, R.F., Oliver, W.C., Nix, W.D., Identification of dispersoid phases created in aluminum during mechanical alloying. Metall Trans A 11A (1980), 1895–1901.
    • (1980) Metall Trans A , vol.11A , pp. 1895-1901
    • Singer, R.F.1    Oliver, W.C.2    Nix, W.D.3
  • 39
    • 0033888137 scopus 로고    scopus 로고
    • Nanostructured composite obtained by mechanically driven reduction reaction of CuO and Al powder mixture
    • [39] Wu, J.M., Li, Z.Z., Nanostructured composite obtained by mechanically driven reduction reaction of CuO and Al powder mixture. J Alloys Compd 299 (2000), 9–16.
    • (2000) J Alloys Compd , vol.299 , pp. 9-16
    • Wu, J.M.1    Li, Z.Z.2
  • 40
    • 76049128209 scopus 로고    scopus 로고
    • Nanocomposites and an extremely hard nanocrystalline intermetallic of Al–Fe alloys prepared by mechanical alloying
    • [40] Nayak, S.S., Wollgarten, M., Banhart, J., Pabi, S.K., Murty, B.S., Nanocomposites and an extremely hard nanocrystalline intermetallic of Al–Fe alloys prepared by mechanical alloying. Mater Sci Eng A A527 (2010), 2370–2378.
    • (2010) Mater Sci Eng A , vol.A527 , pp. 2370-2378
    • Nayak, S.S.1    Wollgarten, M.2    Banhart, J.3    Pabi, S.K.4    Murty, B.S.5
  • 41
    • 44649157024 scopus 로고    scopus 로고
    • Evolutions during synthesis of Al–AlN-nanostructured composite powder by mechanical alloying
    • [41] Abdoli, H., Salahi, E., Farnoush, H., Pourazrang, K., Evolutions during synthesis of Al–AlN-nanostructured composite powder by mechanical alloying. J Alloys Compd 461 (2008), 166–172.
    • (2008) J Alloys Compd , vol.461 , pp. 166-172
    • Abdoli, H.1    Salahi, E.2    Farnoush, H.3    Pourazrang, K.4
  • 42
    • 61449157995 scopus 로고    scopus 로고
    • Sintering behavior of Al–AlN-nanostructured composite powder synthesized by high-energy ball milling
    • [42] Abdoli, H., Asgharzadeh, H., Salahi, E., Sintering behavior of Al–AlN-nanostructured composite powder synthesized by high-energy ball milling. J Alloys Compd 473 (2009), 116–122.
    • (2009) J Alloys Compd , vol.473 , pp. 116-122
    • Abdoli, H.1    Asgharzadeh, H.2    Salahi, E.3
  • 43
    • 74149092756 scopus 로고    scopus 로고
    • Processing and surface properties of Al–AlN composites produced from nanostructured milled powders
    • [43] Abdoli, H., Saebnouri, E., Sadrnezhaad, SK, Ghanbari, M., Shahrab, T., Processing and surface properties of Al–AlN composites produced from nanostructured milled powders. J Alloys Compd 490 (2010), 624–630.
    • (2010) J Alloys Compd , vol.490 , pp. 624-630
    • Abdoli, H.1    Saebnouri, E.2    Sadrnezhaad3    SK4    Ghanbari, M.5    Shahrab, T.6
  • 44
    • 50149120364 scopus 로고    scopus 로고
    • Mechanical induced reaction in Al–CuO system for in-situ fabrication of Al based nanocomposites
    • [44] Arami, H., Simchi, A., Seyed Reihani, S.M., Mechanical induced reaction in Al–CuO system for in-situ fabrication of Al based nanocomposites. J Alloys Compd 465 (2008), 151–156.
    • (2008) J Alloys Compd , vol.465 , pp. 151-156
    • Arami, H.1    Simchi, A.2    Seyed Reihani, S.M.3
  • 46
    • 33644612056 scopus 로고    scopus 로고
    • 3 composite produced by mechanical alloying method
    • 3 composite produced by mechanical alloying method. Mater Des 27 (2006), 684–688.
    • (2006) Mater Des , vol.27 , pp. 684-688
    • Zebarjad, S.M.1    Sajjadi, S.A.2
  • 48
    • 33947102137 scopus 로고    scopus 로고
    • An investigation on the compressibility of aluminum/nano-alumina composite powder prepared by blending and mechanical milling
    • [48] Razavi Hesabi, Z., Hafizpour, H.R., Simchi, A., An investigation on the compressibility of aluminum/nano-alumina composite powder prepared by blending and mechanical milling. Mater Sci Eng A A454–455 (2007), 89–98.
    • (2007) Mater Sci Eng A , vol.A454–455 , pp. 89-98
    • Razavi Hesabi, Z.1    Hafizpour, H.R.2    Simchi, A.3
  • 49
    • 85004704191 scopus 로고
    • Strengthening mechanisms in aluminum–ceramic particle composite alloys by mechanical alloying
    • [49] Hasegawa, T., Miura, T., Takahashi, T., Yakou, T., Strengthening mechanisms in aluminum–ceramic particle composite alloys by mechanical alloying. ISIJ Int 32 (1992), 902–908.
    • (1992) ISIJ Int , vol.32 , pp. 902-908
    • Hasegawa, T.1    Miura, T.2    Takahashi, T.3    Yakou, T.4
  • 50
    • 76549088465 scopus 로고    scopus 로고
    • 3Ti nanocomposites prepared by mechanical alloying: synthesis and mechanical properties
    • 3Ti nanocomposites prepared by mechanical alloying: synthesis and mechanical properties. J Alloys Compd A492 (2010), 128–133.
    • (2010) J Alloys Compd , vol.A492 , pp. 128-133
    • Nayak, S.S.1    Pabi, S.K.2    Murty, B.S.3
  • 52
    • 67649083985 scopus 로고    scopus 로고
    • Al–C nanocomposites consolidated by back pressure equal channel angular pressing
    • [52] Goussous, S., Xu, W., Wu, X., Xia, K., Al–C nanocomposites consolidated by back pressure equal channel angular pressing. Compos Sci Technol 69 (2009), 1997–2001.
    • (2009) Compos Sci Technol , vol.69 , pp. 1997-2001
    • Goussous, S.1    Xu, W.2    Wu, X.3    Xia, K.4
  • 53
    • 0346245224 scopus 로고    scopus 로고
    • 3 reinforced aluminum-based composite produced by mechanical alloying technique
    • 3 reinforced aluminum-based composite produced by mechanical alloying technique. Mater Des 25 (2004), 31–40.
    • (2004) Mater Des , vol.25 , pp. 31-40
    • Arik, H.1
  • 54
    • 34547301414 scopus 로고    scopus 로고
    • Effect of mechanical alloying time and carbon nanotube (CNT) content on the evolution of aluminum (Al)–CNT composite powders
    • [54] Morsi, K., Esawi, A., Effect of mechanical alloying time and carbon nanotube (CNT) content on the evolution of aluminum (Al)–CNT composite powders. J Mater Sci 42 (2007), 4954–4959.
    • (2007) J Mater Sci , vol.42 , pp. 4954-4959
    • Morsi, K.1    Esawi, A.2
  • 55
    • 33751543368 scopus 로고    scopus 로고
    • Dispersion of carbon nanotubes (CNTs) in aluminum powder
    • [55] Esawi, A., Morsi, K., Dispersion of carbon nanotubes (CNTs) in aluminum powder. Composites A A38 (2007), 646–650.
    • (2007) Composites A , vol.A38 , pp. 646-650
    • Esawi, A.1    Morsi, K.2
  • 57
    • 70449518107 scopus 로고    scopus 로고
    • Nanocomposite thermite powders prepared by cryomilling
    • [57] Badiola, C., Schoenitz, M., Zhu, X., Dreizin, E.L., Nanocomposite thermite powders prepared by cryomilling. J Alloys Compd 488 (2009), 386–391.
    • (2009) J Alloys Compd , vol.488 , pp. 386-391
    • Badiola, C.1    Schoenitz, M.2    Zhu, X.3    Dreizin, E.L.4
  • 59
    • 42949098806 scopus 로고    scopus 로고
    • Synthesis and characterization of molybdenum aluminide nanoparticles reinforced aluminium matrix composites
    • [59] Maiti, R., Chakraborty, M., Synthesis and characterization of molybdenum aluminide nanoparticles reinforced aluminium matrix composites. J Alloys Compd 458 (2008), 450–456.
    • (2008) J Alloys Compd , vol.458 , pp. 450-456
    • Maiti, R.1    Chakraborty, M.2
  • 60
    • 44549086570 scopus 로고    scopus 로고
    • Reinforcement with carbon nanotubes in aluminum matrix composites
    • [60] Choi, H.J., Kwon, G.B., Lee, G.Y., Bae, D.H., Reinforcement with carbon nanotubes in aluminum matrix composites. Scr Mater 59 (2008), 360–363.
    • (2008) Scr Mater , vol.59 , pp. 360-363
    • Choi, H.J.1    Kwon, G.B.2    Lee, G.Y.3    Bae, D.H.4
  • 61
    • 72049122111 scopus 로고    scopus 로고
    • Spark plasma extrusion (SPE) of ball-milled aluminum and carbon nanotube reinforced aluminum composite powders
    • [61] Morsi, K., Esawi, A.M.K., Lanka, S., Sayed, A., Taher, M., Spark plasma extrusion (SPE) of ball-milled aluminum and carbon nanotube reinforced aluminum composite powders. Composites A A41 (2010), 322–326.
    • (2010) Composites A , vol.A41 , pp. 322-326
    • Morsi, K.1    Esawi, A.M.K.2    Lanka, S.3    Sayed, A.4    Taher, M.5
  • 62
    • 78249262886 scopus 로고    scopus 로고
    • Effect of carbon nanotube (CNT) content on the mechanical properties of CNT-reinforced aluminum composites
    • [62] Esawi, A.M.K., Morsi, K., Sayed, A., Taher, M., Lanka, S., Effect of carbon nanotube (CNT) content on the mechanical properties of CNT-reinforced aluminum composites. Compos Sci Technol 70 (2010), 2237–2241.
    • (2010) Compos Sci Technol , vol.70 , pp. 2237-2241
    • Esawi, A.M.K.1    Morsi, K.2    Sayed, A.3    Taher, M.4    Lanka, S.5
  • 63
    • 62849111062 scopus 로고    scopus 로고
    • Fabrication and properties of dispersed carbon nanotube–aluminum composites
    • [63] Esawi, A.M.K., Morsi, K., Sayed, A., Abdel Gawad, A., Borah, P., Fabrication and properties of dispersed carbon nanotube–aluminum composites. Mater Sci Eng A A508 (2009), 167–173.
    • (2009) Mater Sci Eng A , vol.A508 , pp. 167-173
    • Esawi, A.M.K.1    Morsi, K.2    Sayed, A.3    Abdel Gawad, A.4    Borah, P.5
  • 66
    • 68549130471 scopus 로고    scopus 로고
    • Structural characterization of a mechanically milled carbon nanotube/aluminum mixture
    • [66] Poirier, D., Gauvin, R., Drew, R.A.L., Structural characterization of a mechanically milled carbon nanotube/aluminum mixture. Composites A A40 (2009), 1482–1489.
    • (2009) Composites A , vol.A40 , pp. 1482-1489
    • Poirier, D.1    Gauvin, R.2    Drew, R.A.L.3
  • 69
    • 33746825059 scopus 로고    scopus 로고
    • Bulk Al/SiC nanocomposite prepared by ball milling and hot pressing method
    • [69] Gu, W.L., Bulk Al/SiC nanocomposite prepared by ball milling and hot pressing method. Trans Nonferrous Metals Soc China 16 (2006), s398–s401.
    • (2006) Trans Nonferrous Metals Soc China , vol.16 , pp. s398-s401
    • Gu, W.L.1
  • 70
    • 69949094983 scopus 로고    scopus 로고
    • On the role of nano-size SiC on lattice strain and grain size of Al/SiC nanocomposite
    • [70] Saberi, Y., Zebarjad, S.M., Akbari, G.H., On the role of nano-size SiC on lattice strain and grain size of Al/SiC nanocomposite. J Alloys Compd 484 (2009), 637–640.
    • (2009) J Alloys Compd , vol.484 , pp. 637-640
    • Saberi, Y.1    Zebarjad, S.M.2    Akbari, G.H.3
  • 72
  • 73
    • 1642327644 scopus 로고    scopus 로고
    • Fabrication of Al–7 wt%Si–0.4 wt%Mg/SiC nanocomposite powders and bulk nanocomposites by high energy ball milling and powder metallurgy
    • [73] Woo, K.D., Zhang, D.L., Fabrication of Al–7 wt%Si–0.4 wt%Mg/SiC nanocomposite powders and bulk nanocomposites by high energy ball milling and powder metallurgy. Current Applied Physics 4 (2004), 175–178.
    • (2004) Current Applied Physics , vol.4 , pp. 175-178
    • Woo, K.D.1    Zhang, D.L.2
  • 76
    • 0032027506 scopus 로고    scopus 로고
    • Solid-state reaction of Al/CuO couple by high-energy ball milling
    • [76] Xi, S.Q., Qu, X.Y., Ma, M.L., Zhou, J., Zheng, X.L., Wang, X.T., Solid-state reaction of Al/CuO couple by high-energy ball milling. J Alloys Compd 268 (1998), 211–214.
    • (1998) J Alloys Compd , vol.268 , pp. 211-214
    • Xi, S.Q.1    Qu, X.Y.2    Ma, M.L.3    Zhou, J.4    Zheng, X.L.5    Wang, X.T.6
  • 77
    • 0032163463 scopus 로고    scopus 로고
    • Enhanced mechanical properties of an Al based metal matrix composite prepared using mechanical alloying
    • [77] Lu, L., Lai, M.O., Ng, C.W., Enhanced mechanical properties of an Al based metal matrix composite prepared using mechanical alloying. Mater Sci Eng A A252 (1998), 203–211.
    • (1998) Mater Sci Eng A , vol.A252 , pp. 203-211
    • Lu, L.1    Lai, M.O.2    Ng, C.W.3
  • 78
    • 33846515842 scopus 로고    scopus 로고
    • Effect of high energy ball milling on the displacement reaction in particulate reinforced Al–Si–Cu alloy matrix composite powders
    • [78] Huo, H.W., Woo, K.D., Guo, G.S., Zhang, D.L., Effect of high energy ball milling on the displacement reaction in particulate reinforced Al–Si–Cu alloy matrix composite powders. J Mater Sci 42 (2007), 59–65.
    • (2007) J Mater Sci , vol.42 , pp. 59-65
    • Huo, H.W.1    Woo, K.D.2    Guo, G.S.3    Zhang, D.L.4
  • 79
    • 72049106916 scopus 로고    scopus 로고
    • Deformation behavior of Al–Si alloy based nanocomposites reinforced with carbon nanotubes
    • [79] Choi, H.J., Shin, J.H., Min, B.H., Bae, D.H., Deformation behavior of Al–Si alloy based nanocomposites reinforced with carbon nanotubes. Composites A41 (2010), 327–329.
    • (2010) Composites , vol.A41 , pp. 327-329
    • Choi, H.J.1    Shin, J.H.2    Min, B.H.3    Bae, D.H.4
  • 80
    • 34547331280 scopus 로고    scopus 로고
    • Response to thermal exposure of the mechanically alloyed Al–Ti/C powders
    • [80] Birol, Y., Response to thermal exposure of the mechanically alloyed Al–Ti/C powders. J Mater Sci 42 (2007), 5123–5128.
    • (2007) J Mater Sci , vol.42 , pp. 5123-5128
    • Birol, Y.1
  • 81
    • 0035860874 scopus 로고    scopus 로고
    • The mechanical behavior of a cryomilled Al–10Ti–2Cu alloy
    • [81] Hayes, R.W., Rodriguez, R., Lavernia, E.J., The mechanical behavior of a cryomilled Al–10Ti–2Cu alloy. Acta Mater 49 (2001), 4055–4068.
    • (2001) Acta Mater , vol.49 , pp. 4055-4068
    • Hayes, R.W.1    Rodriguez, R.2    Lavernia, E.J.3
  • 83
    • 34548254903 scopus 로고    scopus 로고
    • 3 composite materials synthesized by mechanical and thermal process
    • 3 composite materials synthesized by mechanical and thermal process. Mater Sci Eng A A471 (2007), 88–94.
    • (2007) Mater Sci Eng A , vol.A471 , pp. 88-94
    • Durai, T.G.1    Das, K.2    Das, S.3
  • 86
    • 0035251212 scopus 로고    scopus 로고
    • Mechanical alloying during cryomilling of a 5000 Al alloy/AlN powder; the effect of contamination
    • [86] Goujon, C., Goeuriot, P., Delcroix, P., Le Caër, G., Mechanical alloying during cryomilling of a 5000 Al alloy/AlN powder; the effect of contamination. J Alloys Compd 315 (2001), 276–283.
    • (2001) J Alloys Compd , vol.315 , pp. 276-283
    • Goujon, C.1    Goeuriot, P.2    Delcroix, P.3    Le Caër, G.4
  • 87
    • 67349173209 scopus 로고    scopus 로고
    • 4C nano-composite powders by mechanical alloying
    • 4C nano-composite powders by mechanical alloying. J Alloys Compd 479 (2009), 334–341.
    • (2009) J Alloys Compd , vol.479 , pp. 334-341
    • Khakbiz, M.1    Akhlaghi, F.2
  • 88
    • 0037447646 scopus 로고    scopus 로고
    • Homogeneous dispersion of graphite in a 6061 aluminum alloy by ball milling
    • [88] Son, H.T., Kim, T.S., Suryanarayana, C., Chun, B.S., Homogeneous dispersion of graphite in a 6061 aluminum alloy by ball milling. Mater Sci Eng A A348 (2003), 163–169.
    • (2003) Mater Sci Eng A , vol.A348 , pp. 163-169
    • Son, H.T.1    Kim, T.S.2    Suryanarayana, C.3    Chun, B.S.4
  • 89
    • 47249128901 scopus 로고    scopus 로고
    • Preparation and mechanical properties of SiC-reinforced Al6061 composite by mechanical alloying
    • [89] Parvin, N., Assadifard, R., Safarzadeh, P., Sheibani, S., Marashi, P., Preparation and mechanical properties of SiC-reinforced Al6061 composite by mechanical alloying. Mater Sci Eng A A492 (2008), 134–140.
    • (2008) Mater Sci Eng A , vol.A492 , pp. 134-140
    • Parvin, N.1    Assadifard, R.2    Safarzadeh, P.3    Sheibani, S.4    Marashi, P.5
  • 92
    • 77955468474 scopus 로고    scopus 로고
    • In situ synthesis of nanocrystalline Al6063 matrix nanocomposite powder via reactive mechanical alloying
    • [92] Asgharzadeh, H., Simchi, A., Kim, H.S., In situ synthesis of nanocrystalline Al6063 matrix nanocomposite powder via reactive mechanical alloying. Mater Sci Eng A A527 (2010), 4897–4905.
    • (2010) Mater Sci Eng A , vol.A527 , pp. 4897-4905
    • Asgharzadeh, H.1    Simchi, A.2    Kim, H.S.3
  • 94
    • 0040083954 scopus 로고    scopus 로고
    • Processing and properties of SiC-reinforced Al–6.2Zn–2.5Mg–1.7Cu alloy (7010) matrix composites prepared by mechanical alloying
    • [94] Bhaduri, A., Gopinathan, V., Ramakrishnan, P., Miodownik, A.P., Processing and properties of SiC-reinforced Al–6.2Zn–2.5Mg–1.7Cu alloy (7010) matrix composites prepared by mechanical alloying. Mater Sci Eng A A221 (1996), 94–101.
    • (1996) Mater Sci Eng A , vol.A221 , pp. 94-101
    • Bhaduri, A.1    Gopinathan, V.2    Ramakrishnan, P.3    Miodownik, A.P.4
  • 97
    • 0032122136 scopus 로고    scopus 로고
    • Synthesis of 7075 Al/SiC particulate composite powders by mechanical alloying
    • [97] Sankar, R., Singh, P., Synthesis of 7075 Al/SiC particulate composite powders by mechanical alloying. Mater Lett 36 (1998), 201–205.
    • (1998) Mater Lett , vol.36 , pp. 201-205
    • Sankar, R.1    Singh, P.2
  • 100
    • 0028549017 scopus 로고
    • Structure and stability of nanocrystalline TiC powders obtained by reactive high energy milling
    • [100] Teresiak, A., Mattern, N., Kubsch, H., Kieback, B.F., Structure and stability of nanocrystalline TiC powders obtained by reactive high energy milling. Nanostruct Mater 4 (1994), 775–786.
    • (1994) Nanostruct Mater , vol.4 , pp. 775-786
    • Teresiak, A.1    Mattern, N.2    Kubsch, H.3    Kieback, B.F.4
  • 104
    • 27644470372 scopus 로고    scopus 로고
    • Phase transformation in nanometer-sized γ-alumina by mechanical milling
    • [104] Wang, Y., Suryanarayana, C., An, L., Phase transformation in nanometer-sized γ-alumina by mechanical milling. J Am Ceram Soc 88 (2005), 780–783.
    • (2005) J Am Ceram Soc , vol.88 , pp. 780-783
    • Wang, Y.1    Suryanarayana, C.2    An, L.3
  • 105
    • 84876156551 scopus 로고    scopus 로고
    • 3 nanocomposites synthesized by high-energy milling
    • University of Central Florida, Orlando, FL, USA
    • 3 nanocomposites synthesized by high-energy milling. M.S. Thesis, University of Central Florida, Orlando, FL, USA, 2005.
    • (2005) M.S. Thesis
    • Prabhu, B.1
  • 107
    • 0025474245 scopus 로고
    • Mechanical alloying of Al–Ti alloys
    • [107] Lerf, R., Morris, D.G., Mechanical alloying of Al–Ti alloys. Mater Sci Eng A A128 (1990), 119–127.
    • (1990) Mater Sci Eng A , vol.A128 , pp. 119-127
    • Lerf, R.1    Morris, D.G.2
  • 109
    • 0342819025 scopus 로고
    • Helical microtubules of graphitic carbon
    • [109] Iijima, S., Helical microtubules of graphitic carbon. Nature 354 (1991), 56–58.
    • (1991) Nature , vol.354 , pp. 56-58
    • Iijima, S.1
  • 110
    • 1142305245 scopus 로고    scopus 로고
    • Carbon nanotubes: properties and application
    • [110] Popov, V.N., Carbon nanotubes: properties and application. Mater Sci Eng Rep R43 (2004), 61–102.
    • (2004) Mater Sci Eng Rep , vol.R43 , pp. 61-102
    • Popov, V.N.1
  • 111
    • 4544324451 scopus 로고    scopus 로고
    • Realistic applications of CNT
    • [111] Robertson, J., Realistic applications of CNT. Mater Today 7:10 (2004), 46–52.
    • (2004) Mater Today , vol.7 , Issue.10 , pp. 46-52
    • Robertson, J.1
  • 112
    • 65849245674 scopus 로고    scopus 로고
    • Spark plasma extrusion (SPE): prospects and potential
    • [112] Morsi, K., El-Desouky, A., Johnson, B., Mar, A., Lanka, S., Spark plasma extrusion (SPE): prospects and potential. Scr Mater 61 (2009), 395–398.
    • (2009) Scr Mater , vol.61 , pp. 395-398
    • Morsi, K.1    El-Desouky, A.2    Johnson, B.3    Mar, A.4    Lanka, S.5
  • 113
    • 84858312845 scopus 로고    scopus 로고
    • Mechanical properties of nanostructured Al2024–MWCNT composite prepared by optimized mechanical milling and hot pressing methods
    • [113] Jafari, M., Abbasi, M.H., Enayati, M.H., Karimzadeh, F., Mechanical properties of nanostructured Al2024–MWCNT composite prepared by optimized mechanical milling and hot pressing methods. Adv Powder Technol 23 (2012), 205–210.
    • (2012) Adv Powder Technol , vol.23 , pp. 205-210
    • Jafari, M.1    Abbasi, M.H.2    Enayati, M.H.3    Karimzadeh, F.4
  • 115
    • 24144445603 scopus 로고    scopus 로고
    • Strengthening in carbon nanotube/aluminium (CNT/Al) composites
    • [115] George, R., Kashyap, K.T., Rahul, R., Yamdagni, S., Strengthening in carbon nanotube/aluminium (CNT/Al) composites. Scr Mater 53 (2005), 1159–1163.
    • (2005) Scr Mater , vol.53 , pp. 1159-1163
    • George, R.1    Kashyap, K.T.2    Rahul, R.3    Yamdagni, S.4
  • 116
    • 84877877023 scopus 로고    scopus 로고
    • Synthesis, characterization and mechanical properties of SiC-reinforced Al-based nanocomposites processed by MA and SPS. Powder Metall, in press
    • [116] Al-Aqeeli N, Abdullahi K, Hakeem AS, Suryanarayana C, Laoui T, Nouari S. Synthesis, characterization and mechanical properties of SiC-reinforced Al-based nanocomposites processed by MA and SPS. Powder Metall, in press. http://dx.doi.org/10.1179/1743290112Y.0000000029.
    • Al-Aqeeli, N.1    Abdullahi, K.2    Hakeem, A.S.3    Suryanarayana, C.4    Laoui, T.5    Nouari, S.6
  • 117
    • 77956711116 scopus 로고    scopus 로고
    • 3 nanocomposite by mechanical alloying and its formation mechanism
    • 3 nanocomposite by mechanical alloying and its formation mechanism. J Alloys Compd 503 (2010), 294–298.
    • (2010) J Alloys Compd , vol.503 , pp. 294-298
    • Mostaan, H.1    Karimzadeh, F.2    Abbasi, M.H.3
  • 118
    • 84870528586 scopus 로고    scopus 로고
    • 3 nanocomposite through mechanochemical synthesis and evaluation of its mechanism
    • 3 nanocomposite through mechanochemical synthesis and evaluation of its mechanism. Adv Powder Technol 24 (2013), 106–112.
    • (2013) Adv Powder Technol , vol.24 , pp. 106-112
    • Yazdian, N.1    Karimzadeh, F.2    Enayati, M.H.3
  • 119
    • 33644858791 scopus 로고    scopus 로고
    • 3–Co powders mixture
    • 3–Co powders mixture. Key Eng Mater 306–308 (2006), 1109–1114.
    • (2006) Key Eng Mater , vol.306-308 , pp. 1109-1114
    • Yeo, W.S.1    Yaacob, I.I.2
  • 121
    • 0032117128 scopus 로고    scopus 로고
    • Magnetotransport and antiferromagnetic coupling in nanocomposites EuS–Co
    • [121] Tang, J., O'Connor, C.E., Feng, L., Magnetotransport and antiferromagnetic coupling in nanocomposites EuS–Co. J Alloys Compd 275–277 (1998), 606–610.
    • (1998) J Alloys Compd , vol.275-277 , pp. 606-610
    • Tang, J.1    O'Connor, C.E.2    Feng, L.3
  • 122
    • 0029227991 scopus 로고
    • Sintering of copper–alumina composites through blending and mechanical alloying powder metallurgy routes
    • [122] Upadhyaya, A., Upadhyaya, G.S., Sintering of copper–alumina composites through blending and mechanical alloying powder metallurgy routes. Mater Des 16 (1995), 41–45.
    • (1995) Mater Des , vol.16 , pp. 41-45
    • Upadhyaya, A.1    Upadhyaya, G.S.2
  • 123
    • 0012997382 scopus 로고    scopus 로고
    • 3 metal matrix nanocomposite materials by using high energy ball milling
    • 3 metal matrix nanocomposite materials by using high energy ball milling. Mater Sci Eng A A286 (2000), 152–156.
    • (2000) Mater Sci Eng A , vol.A286 , pp. 152-156
    • Ying, D.Y.1    Zhang, D.L.2
  • 126
    • 64549157232 scopus 로고    scopus 로고
    • Fabrication of copper–alumina nanocomposites by mechano-chemical routes
    • [126] Shehata, F., Fathy, A., Abdelhameed, A., Moustafa, S.F., Fabrication of copper–alumina nanocomposites by mechano-chemical routes. J Alloys Compd 476 (2009), 300–305.
    • (2009) J Alloys Compd , vol.476 , pp. 300-305
    • Shehata, F.1    Fathy, A.2    Abdelhameed, A.3    Moustafa, S.F.4
  • 130
    • 33846390909 scopus 로고    scopus 로고
    • Nanodiamond as an effective reinforcing component for nano-copper
    • [130] Livramento, V., Correia, J.B., Shohoji, N., Ōsawa, E., Nanodiamond as an effective reinforcing component for nano-copper. Diamond Relat Mater 16 (2007), 202–204.
    • (2007) Diamond Relat Mater , vol.16 , pp. 202-204
    • Livramento, V.1    Correia, J.B.2    Shohoji, N.3    Ōsawa, E.4
  • 131
    • 0030108696 scopus 로고    scopus 로고
    • Processing and microhardness of bulk Cu–Fe nanocomposites
    • [131] He, L., Ma, E., Processing and microhardness of bulk Cu–Fe nanocomposites. Nanostruct Mater 7 (1996), 327–339.
    • (1996) Nanostruct Mater , vol.7 , pp. 327-339
    • He, L.1    Ma, E.2
  • 132
    • 0032593301 scopus 로고    scopus 로고
    • A method to produce two-phase nanocomposites in solid state
    • [132] He, L., Allard, L.F., Ma, E., A method to produce two-phase nanocomposites in solid state. Nanostruct Mater 12 (1999), 543–546.
    • (1999) Nanostruct Mater , vol.12 , pp. 543-546
    • He, L.1    Allard, L.F.2    Ma, E.3
  • 134
    • 69249245464 scopus 로고    scopus 로고
    • Kinetics of mechanochemical synthesis of Me/FeS (Me = Cu, Pb, Sb) nanoparticles
    • [134] Balaz, P., Dutkova, E., Skorvánek, I., Gock, E., Kovac, J., Satka, A., Kinetics of mechanochemical synthesis of Me/FeS (Me = Cu, Pb, Sb) nanoparticles. J Alloys Compd 483 (2009), 484–487.
    • (2009) J Alloys Compd , vol.483 , pp. 484-487
    • Balaz, P.1    Dutkova, E.2    Skorvánek, I.3    Gock, E.4    Kovac, J.5    Satka, A.6
  • 135
    • 67349178348 scopus 로고    scopus 로고
    • In situ preparation of Cu–MnO nanocomposite powder through mechanochemical synthesis
    • [135] Sheibani, S., Khakbiz, M., Omidi, M., In situ preparation of Cu–MnO nanocomposite powder through mechanochemical synthesis. J Alloys Compd 477 (2009), 683–687.
    • (2009) J Alloys Compd , vol.477 , pp. 683-687
    • Sheibani, S.1    Khakbiz, M.2    Omidi, M.3
  • 136
    • 0028463864 scopus 로고
    • Synthesis of Cu–NbC nanocomposites by mechanical alloying
    • [136] Murphy, B.R., Courtney, T.H., Synthesis of Cu–NbC nanocomposites by mechanical alloying. Nanostruct Mater 4 (1994), 365–369.
    • (1994) Nanostruct Mater , vol.4 , pp. 365-369
    • Murphy, B.R.1    Courtney, T.H.2
  • 137
    • 64549161184 scopus 로고    scopus 로고
    • Effects of milling time on hardness and electrical conductivity of in situ Cu–NbC composite produced by mechanical alloying
    • [137] Zuhailawati, H., Mahani, Y., Effects of milling time on hardness and electrical conductivity of in situ Cu–NbC composite produced by mechanical alloying. J Alloys Compd 476 (2009), 142–146.
    • (2009) J Alloys Compd , vol.476 , pp. 142-146
    • Zuhailawati, H.1    Mahani, Y.2
  • 138
    • 70649090190 scopus 로고    scopus 로고
    • Microstructure and properties of copper composite containing in situ NbC reinforcement: effects of milling speed
    • [138] Zuhailawati, H., Salihin, H.M., Mahani, Y., Microstructure and properties of copper composite containing in situ NbC reinforcement: effects of milling speed. J Alloys Compd 489 (2010), 369–374.
    • (2010) J Alloys Compd , vol.489 , pp. 369-374
    • Zuhailawati, H.1    Salihin, H.M.2    Mahani, Y.3
  • 139
    • 49749086508 scopus 로고    scopus 로고
    • Synthesis of copper–niobium carbide composite powder by in situ processing
    • [139] Zuhailawati, H., Othman, R., Long, B.D., Umemoto, M., Synthesis of copper–niobium carbide composite powder by in situ processing. J Alloys Compd 464 (2008), 185–189.
    • (2008) J Alloys Compd , vol.464 , pp. 185-189
    • Zuhailawati, H.1    Othman, R.2    Long, B.D.3    Umemoto, M.4
  • 140
    • 23344434352 scopus 로고    scopus 로고
    • Production of copper–niobium carbide nanocomposite powders via mechanical alloying
    • [140] Marques, M.T., Livramento, V., Correia, J.B., Almeida, A., Vilar, R., Production of copper–niobium carbide nanocomposite powders via mechanical alloying. Mater Sci Eng A A399 (2005), 382–386.
    • (2005) Mater Sci Eng A , vol.A399 , pp. 382-386
    • Marques, M.T.1    Livramento, V.2    Correia, J.B.3    Almeida, A.4    Vilar, R.5
  • 141
    • 0026140644 scopus 로고
    • Preparation of dispersion-strengthened coppers with NbC and TaC by mechanical alloying
    • [141] Takahashi, T., Hashimoto, Y., Preparation of dispersion-strengthened coppers with NbC and TaC by mechanical alloying. Mater Trans Jpn Inst Metals 32 (1991), 389–397.
    • (1991) Mater Trans Jpn Inst Metals , vol.32 , pp. 389-397
    • Takahashi, T.1    Hashimoto, Y.2
  • 142
  • 143
    • 0024749896 scopus 로고
    • Preparation of TiC-dispersion-strengthened copper by the application of mechanical alloying
    • [143] Takahashi, T., Hashimoto, Y., Koyama, K., Preparation of TiC-dispersion-strengthened copper by the application of mechanical alloying. J Jpn Soc Powder Powder Metall 36 (1989), 837–841.
    • (1989) J Jpn Soc Powder Powder Metall , vol.36 , pp. 837-841
    • Takahashi, T.1    Hashimoto, Y.2    Koyama, K.3
  • 145
    • 31544454988 scopus 로고    scopus 로고
    • Consideration of Orowan strengthening effect in particulate-reinforced metal matrix nanocomposites. A model for predicting their yield strength
    • [145] Zhang, Z., Chen, D.L., Consideration of Orowan strengthening effect in particulate-reinforced metal matrix nanocomposites. A model for predicting their yield strength. Scr Mater 54 (2006), 1321–1326.
    • (2006) Scr Mater , vol.54 , pp. 1321-1326
    • Zhang, Z.1    Chen, D.L.2
  • 147
    • 0029352993 scopus 로고
    • Ball milling of ductile metals
    • [147] Huang, J.Y., Wu, Y.K., Ye, H.Q., Ball milling of ductile metals. Mater Sci Eng A A199 (1995), 165–172.
    • (1995) Mater Sci Eng A , vol.A199 , pp. 165-172
    • Huang, J.Y.1    Wu, Y.K.2    Ye, H.Q.3
  • 148
    • 0037052695 scopus 로고    scopus 로고
    • Preparation of bulk ultrafine-grained and nanostructured Zn, Al and their alloys by in situ consolidation of powders during mechanical attrition
    • [148] Zhang, X., Wang, H., Kassem, M., Narayan, J., Koch, C.C., Preparation of bulk ultrafine-grained and nanostructured Zn, Al and their alloys by in situ consolidation of powders during mechanical attrition. Scr Mater 46 (2002), 661–665.
    • (2002) Scr Mater , vol.46 , pp. 661-665
    • Zhang, X.1    Wang, H.2    Kassem, M.3    Narayan, J.4    Koch, C.C.5
  • 149
    • 0343892651 scopus 로고
    • The Russian doll effect by mechanical alloying
    • [149] Harris, A.M., Schaffer, G.B., Page, N.W., The Russian doll effect by mechanical alloying. J Mater Sci Lett 12 (1993), 1103–1104.
    • (1993) J Mater Sci Lett , vol.12 , pp. 1103-1104
    • Harris, A.M.1    Schaffer, G.B.2    Page, N.W.3
  • 151
    • 0024620351 scopus 로고
    • Preparation of boron carbide-dispersion-strengthened copper by the application of mechanical alloying
    • [151] Takahashi, T., Hashimoto, Y., Preparation of boron carbide-dispersion-strengthened copper by the application of mechanical alloying. J Jpn Soc Powder Powder Metall 36 (1989), 85–89.
    • (1989) J Jpn Soc Powder Powder Metall , vol.36 , pp. 85-89
    • Takahashi, T.1    Hashimoto, Y.2
  • 152
    • 0003065279 scopus 로고
    • Preparation of carbide-dispersion-strengthened coppers by mechanical alloying
    • [152] Takahashi, T., Hashimoto, Y., Preparation of carbide-dispersion-strengthened coppers by mechanical alloying. Mater Sci Forum 88–90 (1992), 175–182.
    • (1992) Mater Sci Forum , vol.88-90 , pp. 175-182
    • Takahashi, T.1    Hashimoto, Y.2
  • 153
    • 85004485814 scopus 로고
    • Development of oxide- and carbide-dispersion-strengthened coppers by mechanical alloying
    • [153] Takahashi, T., Development of oxide- and carbide-dispersion-strengthened coppers by mechanical alloying. J Jpn Soc Powder Powder Metall 39 (1992), 529–538.
    • (1992) J Jpn Soc Powder Powder Metall , vol.39 , pp. 529-538
    • Takahashi, T.1
  • 155
    • 2342473333 scopus 로고    scopus 로고
    • The solubility of C in solid Cu
    • [155] Lopez, G.A., Mittemeijer, E.J., The solubility of C in solid Cu. Scr Mater 51 (2004), 1–5.
    • (2004) Scr Mater , vol.51 , pp. 1-5
    • Lopez, G.A.1    Mittemeijer, E.J.2
  • 156
    • 39849106652 scopus 로고    scopus 로고
    • XRD, XPS and SEM characterisation of Cu–NbC nanocomposite produced by mechanical alloying
    • [156] Marques, M.T., Ferraria, A.M., Correia, J.B., Botelho do Rego, A.M., Vilar, R., XRD, XPS and SEM characterisation of Cu–NbC nanocomposite produced by mechanical alloying. Mater Chem Phys 109 (2008), 174–180.
    • (2008) Mater Chem Phys , vol.109 , pp. 174-180
    • Marques, M.T.1    Ferraria, A.M.2    Correia, J.B.3    Botelho do Rego, A.M.4    Vilar, R.5
  • 157
    • 0024719953 scopus 로고
    • Mechanical properties of the TiC- and ZrC-dispersion-strengthened coppers prepared by the application of mechanical alloying
    • [157] Takahashi, T., Hashimoto, Y., Mechanical properties of the TiC- and ZrC-dispersion-strengthened coppers prepared by the application of mechanical alloying. J Jpn Soc Powder Powder Metall 36 (1989), 688–692.
    • (1989) J Jpn Soc Powder Powder Metall , vol.36 , pp. 688-692
    • Takahashi, T.1    Hashimoto, Y.2
  • 158
    • 0023401144 scopus 로고
    • Dispersion strengthened alloys for aerospace
    • [158] Hack, G.A.J., Dispersion strengthened alloys for aerospace. Metals Mater 3 (1987), 457–462.
    • (1987) Metals Mater , vol.3 , pp. 457-462
    • Hack, G.A.J.1
  • 159
    • 0004529705 scopus 로고
    • High temperature alloys minimize furnace downtime
    • [159] Fischer, J.J., deBarbadillo, J.J., High temperature alloys minimize furnace downtime. Heat Treat 23:5 (1991), 15–16.
    • (1991) Heat Treat , vol.23 , Issue.5 , pp. 15-16
    • Fischer, J.J.1    deBarbadillo, J.J.2
  • 160
    • 0001055159 scopus 로고
    • MA alloys for aerospace applications
    • F.H. Froes J.J. deBarbadillo ASM International Materials Park (OH)
    • [160] Elliott, J.C., Hack, G.A.J., MA alloys for aerospace applications. Froes, F.H., deBarbadillo, J.J., (eds.) Structural applications of mechanical alloying, 1990, ASM International, Materials Park (OH), 15–24.
    • (1990) Structural applications of mechanical alloying , pp. 15-24
    • Elliott, J.C.1    Hack, G.A.J.2
  • 165
    • 33746880255 scopus 로고    scopus 로고
    • Iron–cementite nanocomposites obtained by mechanical alloying and subsequent magnetic pulsed pressing
    • [165] Elsukov, E.P., Konygin, G.N., Ivanov, V.V., Zayats, S.V., Dorofeev, G.A., Arsent'eva, N.B., et al. Iron–cementite nanocomposites obtained by mechanical alloying and subsequent magnetic pulsed pressing. Phys Metals Metallogr 101 (2006), 491–497.
    • (2006) Phys Metals Metallogr , vol.101 , pp. 491-497
    • Elsukov, E.P.1    Konygin, G.N.2    Ivanov, V.V.3    Zayats, S.V.4    Dorofeev, G.A.5    Arsent'eva, N.B.6
  • 166
    • 10844245738 scopus 로고    scopus 로고
    • 2 system prepared by mechanical alloying
    • 2 system prepared by mechanical alloying. Physica B 354 (2004), 141–144.
    • (2004) Physica B , vol.354 , pp. 141-144
    • Pozo Lopez, G.1    Silvetti, S.P.2
  • 169
    • 0037430217 scopus 로고    scopus 로고
    • Application of atomic force microscopy in microstructure analysis of mechanically alloyed NdFeB/α-Fe-type nanocomposites
    • [169] Jakubowicz, J., Application of atomic force microscopy in microstructure analysis of mechanically alloyed NdFeB/α-Fe-type nanocomposites. J Alloys Compd 351 (2003), 196–201.
    • (2003) J Alloys Compd , vol.351 , pp. 196-201
    • Jakubowicz, J.1
  • 171
    • 0043286464 scopus 로고
    • Iron-alumina nanocomposites obtained by mechanosynthesis
    • [171] Matteazzi, P., Miani, F., Basset, D., Iron-alumina nanocomposites obtained by mechanosynthesis. Nanostruct Mater 2 (1993), 355–360.
    • (1993) Nanostruct Mater , vol.2 , pp. 355-360
    • Matteazzi, P.1    Miani, F.2    Basset, D.3
  • 174
    • 0030563682 scopus 로고    scopus 로고
    • Magnetic properties of nanocrystalline mechanically alloyed Fe–TM–C powder (TM = Ta, Hf, W, Mo, Nb, Zr, and Ti)
    • [174] Kuhrt, C., Magnetic properties of nanocrystalline mechanically alloyed Fe–TM–C powder (TM = Ta, Hf, W, Mo, Nb, Zr, and Ti). J Mag Mag Mater 157–158 (1996), 235–236.
    • (1996) J Mag Mag Mater , vol.157-158 , pp. 235-236
    • Kuhrt, C.1
  • 175
    • 0025452008 scopus 로고
    • Preparation of the NbC-dispersion-strengthened iron powder by the application of mechanical alloying
    • [175] Takahashi, T., Daichoh, H., Preparation of the NbC-dispersion-strengthened iron powder by the application of mechanical alloying. J Jpn Soc Powder Powder Metall 37 (1990), 656–659.
    • (1990) J Jpn Soc Powder Powder Metall , vol.37 , pp. 656-659
    • Takahashi, T.1    Daichoh, H.2
  • 178
    • 36148934151 scopus 로고    scopus 로고
    • Synthesis and grain growth kinetics of in-situ FeAl matrix nanocomposites (I): mechanical alloying of Fe–Al–Ti–B composite powder
    • [178] Ren, R., Wu, Y.C., Tang, W.M., Wang, F.T., Wang, T.G., Zheng, Z.X., Synthesis and grain growth kinetics of in-situ FeAl matrix nanocomposites (I): mechanical alloying of Fe–Al–Ti–B composite powder. Trans Nonferrous Metal Soc China 17 (2007), 919–924.
    • (2007) Trans Nonferrous Metal Soc China , vol.17 , pp. 919-924
    • Ren, R.1    Wu, Y.C.2    Tang, W.M.3    Wang, F.T.4    Wang, T.G.5    Zheng, Z.X.6
  • 179
    • 72049112832 scopus 로고    scopus 로고
    • 2 composite system during mechanical alloying
    • 2 composite system during mechanical alloying. J Alloys Compd 485 (2009), 724–729.
    • (2009) J Alloys Compd , vol.485 , pp. 724-729
    • Sachan, R.1    Park, J.W.2
  • 182
    • 84858802978 scopus 로고    scopus 로고
    • Structural characterization of stainless steel/TiC nanocomposites produced by high-energy ball-milling method at different milling times
    • [182] Sheikhzadeh, M., Sanjabi, S., Structural characterization of stainless steel/TiC nanocomposites produced by high-energy ball-milling method at different milling times. Mater Des 39 (2012), 366–372.
    • (2012) Mater Des , vol.39 , pp. 366-372
    • Sheikhzadeh, M.1    Sanjabi, S.2
  • 183
    • 77955552810 scopus 로고    scopus 로고
    • Preface to the viewpoint set on: the current state of magnesium alloy science and technology
    • [183] Agnew, S.R., Nie, J.F., Preface to the viewpoint set on: the current state of magnesium alloy science and technology. Scr Mater 63 (2010), 671–673.
    • (2010) Scr Mater , vol.63 , pp. 671-673
    • Agnew, S.R.1    Nie, J.F.2
  • 184
    • 77953543007 scopus 로고    scopus 로고
    • Towards the development of heat-treatable high-strength wrought Mg alloys
    • [184] Hono, K., Mendis, C.L., Sasaki, T.T., Oh-ishi, K., Towards the development of heat-treatable high-strength wrought Mg alloys. Scr Mater 63 (2010), 710–715.
    • (2010) Scr Mater , vol.63 , pp. 710-715
    • Hono, K.1    Mendis, C.L.2    Sasaki, T.T.3    Oh-ishi, K.4
  • 186
    • 84982222797 scopus 로고    scopus 로고
    • A North American automotive strategic vision for magnesium
    • Magnesium Vision 2020
    • [186] Magnesium Vision 2020. A North American automotive strategic vision for magnesium. US Council for Automotive Research (USCAR), 2006. < http://www.uscar.org>.
    • (2006) US Council for Automotive Research USCAR
  • 187
    • 0003687445 scopus 로고    scopus 로고
    • Deformation and fracture mechanics of engineering materials
    • 5th ed. Wiley New York (NY)
    • [187] Hertzberg, R.W., Vinci, R.P., Hertzberg, J.L., Deformation and fracture mechanics of engineering materials. 5th ed., 2012, Wiley, New York (NY).
    • (2012)
    • Hertzberg, R.W.1    Vinci, R.P.2    Hertzberg, J.L.3
  • 188
    • 0035946881 scopus 로고    scopus 로고
    • Compressive mechanical properties of Mg–TiC nanocomposite synthesized by mechanical milling
    • [188] Hwang, S., Nishimura, C., McCormick, P.G., Compressive mechanical properties of Mg–TiC nanocomposite synthesized by mechanical milling. Scr Mater 44 (2001), 2457–2462.
    • (2001) Scr Mater , vol.44 , pp. 2457-2462
    • Hwang, S.1    Nishimura, C.2    McCormick, P.G.3
  • 190
    • 28044467773 scopus 로고    scopus 로고
    • Processing by controlled mechanical milling of nanocomposite powders Mg + X (X = Co, Cr, Mo, V, Y, Zr) and their hydrogenation properties
    • [190] Bystrzycki, J., Czujko, T., Varin, R.A., Processing by controlled mechanical milling of nanocomposite powders Mg + X (X = Co, Cr, Mo, V, Y, Zr) and their hydrogenation properties. J Alloys Compd 404–406 (2005), 507–510.
    • (2005) J Alloys Compd , vol.404-406 , pp. 507-510
    • Bystrzycki, J.1    Czujko, T.2    Varin, R.A.3
  • 192
    • 33847698046 scopus 로고    scopus 로고
    • Development of Mg/Cu nanocomposites using microwave assisted rapid sintering
    • [192] Wong, W.L.E., Gupta, M., Development of Mg/Cu nanocomposites using microwave assisted rapid sintering. Compos Sci Technol 67 (2007), 1541–1552.
    • (2007) Compos Sci Technol , vol.67 , pp. 1541-1552
    • Wong, W.L.E.1    Gupta, M.2
  • 193
    • 67349147022 scopus 로고    scopus 로고
    • Structural and hydriding/dehydriding properties of Mg–La–Ni-based composites
    • [193] Zhu, Y.F., Liu, Y.F., Gu, H., Li, L., Structural and hydriding/dehydriding properties of Mg–La–Ni-based composites. J Alloys Compd 477 (2009), 440–444.
    • (2009) J Alloys Compd , vol.477 , pp. 440-444
    • Zhu, Y.F.1    Liu, Y.F.2    Gu, H.3    Li, L.4
  • 195
    • 0842269117 scopus 로고    scopus 로고
    • Hydrogen sorption properties of graphite-modified nanocomposites prepared by ball-milling
    • [195] Bobet, J.L., Grigorova, E., Khrussanova, M., Khristov, M., Stefanov, P., Peshev, P., et al. Hydrogen sorption properties of graphite-modified nanocomposites prepared by ball-milling. J Alloys Compd 366 (2004), 298–302.
    • (2004) J Alloys Compd , vol.366 , pp. 298-302
    • Bobet, J.L.1    Grigorova, E.2    Khrussanova, M.3    Khristov, M.4    Stefanov, P.5    Peshev, P.6
  • 197
    • 3042791411 scopus 로고    scopus 로고
    • Structural characterization and dehydrogenation behavior of Mg–5 at.%Nb nano-composite processed by reactive milling
    • [197] de Castro, J.F.R., Santos, S.F., Costa, A.L.M., Yavari, A.R., Botta F, W.J., Ishikawa, T.T., Structural characterization and dehydrogenation behavior of Mg–5 at.%Nb nano-composite processed by reactive milling. J Alloys Compd 376 (2004), 251–256.
    • (2004) J Alloys Compd , vol.376 , pp. 251-256
    • de Castro, J.F.R.1    Santos, S.F.2    Costa, A.L.M.3    Yavari, A.R.4    Botta F, W.J.5    Ishikawa, T.T.6
  • 198
    • 34548069998 scopus 로고    scopus 로고
    • Improving mechanical properties of magnesium using nano-yttria reinforcement ad microwave assisted powder metallurgy method
    • [198] Tun, K.S., Gupta, M., Improving mechanical properties of magnesium using nano-yttria reinforcement ad microwave assisted powder metallurgy method. Compos Sci Technol 67 (2007), 2657–2664.
    • (2007) Compos Sci Technol , vol.67 , pp. 2657-2664
    • Tun, K.S.1    Gupta, M.2
  • 199
    • 77954817050 scopus 로고    scopus 로고
    • 3 + Ni) nanocomposites
    • 3 + Ni) nanocomposites. Mater Sci Eng A A527 (2010), 5550–5556.
    • (2010) Mater Sci Eng A , vol.A527 , pp. 5550-5556
    • Tun, K.S.1    Gupta, M.2
  • 203
    • 33947585527 scopus 로고    scopus 로고
    • Microstructure and hydrogen sorption kinetics of Mg nanopowders with catalyst
    • [203] Révész, Á, Fátay, D., Spassov, T., Microstructure and hydrogen sorption kinetics of Mg nanopowders with catalyst. J Alloys Compd 434–435 (2007), 725–728.
    • (2007) J Alloys Compd , vol.434-435 , pp. 725-728
    • Révész, Á.1    Fátay, D.2    Spassov, T.3
  • 205
    • 1542347765 scopus 로고    scopus 로고
    • Nanostructured Mg–5 %Al-x%Nd alloys
    • [205] Lu, L., Raviprasad, K., Lai, M.O., Nanostructured Mg–5 %Al-x%Nd alloys. Mater Sci Eng A A368 (2004), 117–125.
    • (2004) Mater Sci Eng A , vol.A368 , pp. 117-125
    • Lu, L.1    Raviprasad, K.2    Lai, M.O.3
  • 206
    • 3142618934 scopus 로고    scopus 로고
    • Magnesium nanocomposite via mechanochemical milling
    • [206] Lu, L., Lai, M.O., Liang, W., Magnesium nanocomposite via mechanochemical milling. Compos Sci Technol 64 (2004), 2009–2014.
    • (2004) Compos Sci Technol , vol.64 , pp. 2009-2014
    • Lu, L.1    Lai, M.O.2    Liang, W.3
  • 207
    • 4143152736 scopus 로고    scopus 로고
    • Formation of magnesium nanocomposite via mechanical milling
    • [207] Lai, M.O., Lu, L., Liang, W., Formation of magnesium nanocomposite via mechanical milling. Compos Struct 66 (2004), 301–304.
    • (2004) Compos Struct , vol.66 , pp. 301-304
    • Lai, M.O.1    Lu, L.2    Liang, W.3
  • 209
    • 59249101144 scopus 로고    scopus 로고
    • Cyclic hydrogen storage properties of Mg milled with nickel nano-powders and NiO
    • [209] Lei, Z.L., Liu, Z., Chen, Y.B., Cyclic hydrogen storage properties of Mg milled with nickel nano-powders and NiO. J Alloys Compd 470 (2009), 470–472.
    • (2009) J Alloys Compd , vol.470 , pp. 470-472
    • Lei, Z.L.1    Liu, Z.2    Chen, Y.B.3
  • 213
    • 0035975092 scopus 로고    scopus 로고
    • Hydrogen sorption properties of an Mg–Ti–V–Fe nanocomposite obtained by mechanical alloying
    • [213] Khrussanova, M., Grigorova, E., Mitov, I., Radev, D., Peshev, P., Hydrogen sorption properties of an Mg–Ti–V–Fe nanocomposite obtained by mechanical alloying. J Alloys Compd 327 (2001), 230–234.
    • (2001) J Alloys Compd , vol.327 , pp. 230-234
    • Khrussanova, M.1    Grigorova, E.2    Mitov, I.3    Radev, D.4    Peshev, P.5
  • 221
    • 67649277698 scopus 로고    scopus 로고
    • Study on the electrochemical properties of MgNi–CuO hydrogen storage composite materials
    • [221] Zhang, Y.H., Jiao, L.F., Yuan, H., Miao, Y.L., Wang, Q.H., Liu, L., et al. Study on the electrochemical properties of MgNi–CuO hydrogen storage composite materials. J Alloys Compd 481 (2009), 639–643.
    • (2009) J Alloys Compd , vol.481 , pp. 639-643
    • Zhang, Y.H.1    Jiao, L.F.2    Yuan, H.3    Miao, Y.L.4    Wang, Q.H.5    Liu, L.6
  • 222
    • 0032666406 scopus 로고    scopus 로고
    • Nanocrystalline magnesium for hydrogen storage
    • [222] Zaluska, A., Zaluski, L., Ström-Olsen, J.O., Nanocrystalline magnesium for hydrogen storage. J Alloys Compd 288 (1999), 217–225.
    • (1999) J Alloys Compd , vol.288 , pp. 217-225
    • Zaluska, A.1    Zaluski, L.2    Ström-Olsen, J.O.3
  • 223
    • 0000123516 scopus 로고    scopus 로고
    • Recent developments in the applications of nanocrystalline materials to hydrogen technologies
    • [223] Schulz, R., Huot, J., Liang, G., Boily, S., Lalande, G., Denis, M.C., et al. Recent developments in the applications of nanocrystalline materials to hydrogen technologies. Mater Sci Eng A A267 (1999), 240–245.
    • (1999) Mater Sci Eng A , vol.A267 , pp. 240-245
    • Schulz, R.1    Huot, J.2    Liang, G.3    Boily, S.4    Lalande, G.5    Denis, M.C.6
  • 224
    • 0001177251 scopus 로고    scopus 로고
    • Structure, catalysis and atomic reactions on the nano-scale: a systematic approach to metal hydrides for hydrogen storage
    • [224] Zaluska, A., Zaluski, L., Ström-Olsen, J.O., Structure, catalysis and atomic reactions on the nano-scale: a systematic approach to metal hydrides for hydrogen storage. Appl Phys A A72 (2001), 157–165.
    • (2001) Appl Phys A , vol.A72 , pp. 157-165
    • Zaluska, A.1    Zaluski, L.2    Ström-Olsen, J.O.3
  • 225
    • 0003076880 scopus 로고    scopus 로고
    • Materials science of Mg–Ni-based new hydrides
    • [225] Orimo, S., Fujii, H., Materials science of Mg–Ni-based new hydrides. Appl Phys A A72 (2001), 167–186.
    • (2001) Appl Phys A , vol.A72 , pp. 167-186
    • Orimo, S.1    Fujii, H.2
  • 226
    • 0035891289 scopus 로고    scopus 로고
    • Hydrogen storage materials for mobile applications
    • [226] Schlapbach, L., Züttel, A., Hydrogen storage materials for mobile applications. Nature 414 (2001), 353–358.
    • (2001) Nature , vol.414 , pp. 353-358
    • Schlapbach, L.1    Züttel, A.2
  • 227
    • 41849093384 scopus 로고    scopus 로고
    • The hydrogen fuel alternative
    • [227] Crabtree, G.W., Dresselhaus, M.S., The hydrogen fuel alternative. MRS Bull 33 (2008), 421–428.
    • (2008) MRS Bull , vol.33 , pp. 421-428
    • Crabtree, G.W.1    Dresselhaus, M.S.2
  • 229
    • 0029181099 scopus 로고
    • Nanocrystalline materials
    • [229] Suryanarayana, C., Nanocrystalline materials. Int Mater Rev 40 (1995), 41–64.
    • (1995) Int Mater Rev , vol.40 , pp. 41-64
    • Suryanarayana, C.1
  • 232
    • 0033285161 scopus 로고    scopus 로고
    • Structural study and hydrogen sorption kinetics of ball-milled magnesium hydride
    • [232] Huot, J., Liang, G., Bobet, S., Van Neste, A., Schulz, R., Structural study and hydrogen sorption kinetics of ball-milled magnesium hydride. J Alloys Compd 295 (1999), 495–500.
    • (1999) J Alloys Compd , vol.295 , pp. 495-500
    • Huot, J.1    Liang, G.2    Bobet, S.3    Van Neste, A.4    Schulz, R.5
  • 233
    • 0242291429 scopus 로고    scopus 로고
    • Mechanically alloyed metal hydride systems
    • [233] Huot, J., Liang, G., Schulz, R., Mechanically alloyed metal hydride systems. Appl Phys A A72 (2001), 187–195.
    • (2001) Appl Phys A , vol.A72 , pp. 187-195
    • Huot, J.1    Liang, G.2    Schulz, R.3
  • 236
    • 0035250934 scopus 로고    scopus 로고
    • Metal oxides as catalysts for improved hydrogen sorption in nanocrystalline Mg-based materials
    • [236] Oelerich, W., Klassen, T., Bormann, R., Metal oxides as catalysts for improved hydrogen sorption in nanocrystalline Mg-based materials. J Alloys Compd 315 (2001), 237–242.
    • (2001) J Alloys Compd , vol.315 , pp. 237-242
    • Oelerich, W.1    Klassen, T.2    Bormann, R.3
  • 245
    • 0031131078 scopus 로고    scopus 로고
    • Ti-doped alkali metal aluminium hydrides as potential novel reversible hydrogen storage materials
    • [245] Bogdanović, B., Schwickardi, M., Ti-doped alkali metal aluminium hydrides as potential novel reversible hydrogen storage materials. J Alloys Compd 253–254 (1997), 1–9.
    • (1997) J Alloys Compd , vol.253-254 , pp. 1-9
    • Bogdanović, B.1    Schwickardi, M.2
  • 246
    • 64549140147 scopus 로고    scopus 로고
    • Investigation of (Mg, Al, Li, H)-based hydride and alanate mixtures produced by reactive ball milling
    • [246] Léon, A., Zabara, O., Sartori, S., Eigen, N., Dornheim, M., Klassen, T., et al. Investigation of (Mg, Al, Li, H)-based hydride and alanate mixtures produced by reactive ball milling. J Alloys Compd 476 (2009), 425–428.
    • (2009) J Alloys Compd , vol.476 , pp. 425-428
    • Léon, A.1    Zabara, O.2    Sartori, S.3    Eigen, N.4    Dornheim, M.5    Klassen, T.6
  • 247
    • 84895400600 scopus 로고    scopus 로고
    • Bulk metallic glasses
    • CRC Press Boca Raton (FL)
    • [247] Suryanarayana, C., Inoue, A., Bulk metallic glasses. 2011, CRC Press, Boca Raton (FL).
    • (2011)
    • Suryanarayana, C.1    Inoue, A.2
  • 249
    • 84985115350 scopus 로고
    • Synthesis of nanocrystalline alumina-metal composites by room-temperature ball-milling of metal oxides and aluminium
    • [249] Matteazzi, P., Le Cäer, G., Synthesis of nanocrystalline alumina-metal composites by room-temperature ball-milling of metal oxides and aluminium. J Am Ceram Soc 75 (1992), 2749–2755.
    • (1992) J Am Ceram Soc , vol.75 , pp. 2749-2755
    • Matteazzi, P.1    Le Cäer, G.2
  • 251
    • 77957334059 scopus 로고    scopus 로고
    • 2 nanocomposite produced by mechanical alloying
    • 2 nanocomposite produced by mechanical alloying. J Alloys Compd 508 (2010), 152–157.
    • (2010) J Alloys Compd , vol.508 , pp. 152-157
    • Abbasi, A.R.1    Shamanian, M.2
  • 253
    • 67949110804 scopus 로고    scopus 로고
    • Transient oxidation of Mo–Si–B alloys: effect of the microstructure size scale
    • [253] Rioult, F.A., Imhoff, S.D., Sakidja, R., Perepezko, J.H., Transient oxidation of Mo–Si–B alloys: effect of the microstructure size scale. Acta Mater 57 (2009), 4600–4613.
    • (2009) Acta Mater , vol.57 , pp. 4600-4613
    • Rioult, F.A.1    Imhoff, S.D.2    Sakidja, R.3    Perepezko, J.H.4
  • 254
    • 79959742536 scopus 로고    scopus 로고
    • 3Si nanocomposite powders by two-step mechanical alloying and subsequent heat treatment
    • 3Si nanocomposite powders by two-step mechanical alloying and subsequent heat treatment. J Alloys Compd 509 (2011), 8097–8104.
    • (2011) J Alloys Compd , vol.509 , pp. 8097-8104
    • Abbasi, A.R.1    Shamanian, M.2
  • 256
    • 0037243591 scopus 로고    scopus 로고
    • 3 magnetic composite synthesized by mechanical alloying
    • 3 magnetic composite synthesized by mechanical alloying. J Mag Mag Mater 256 (2003), 13–19.
    • (2003) J Mag Mag Mater , vol.256 , pp. 13-19
    • Shi, Y.1    Ding, J.2    Tan, S.L.H.3    Hu, Z.4
  • 257
    • 15544363426 scopus 로고    scopus 로고
    • The formation of aluminides in intermetallic nickel aluminide-based nanocomposites
    • [257] Ismail, R., Yaacob, I.I., The formation of aluminides in intermetallic nickel aluminide-based nanocomposites. J Alloys Compd 392 (2005), 214–217.
    • (2005) J Alloys Compd , vol.392 , pp. 214-217
    • Ismail, R.1    Yaacob, I.I.2
  • 258
    • 0029222324 scopus 로고
    • Synthesis and mechanical properties of nanoscale mechanically milled NiAl
    • [258] Smith, T.R., Vechhio, K.S., Synthesis and mechanical properties of nanoscale mechanically milled NiAl. Nanostruct Mater 5 (1995), 11–23.
    • (1995) Nanostruct Mater , vol.5 , pp. 11-23
    • Smith, T.R.1    Vechhio, K.S.2
  • 259
    • 0034262454 scopus 로고    scopus 로고
    • 3 intermetallic-matrix composite powders by mechanical alloying technique
    • 3 intermetallic-matrix composite powders by mechanical alloying technique. Intermetallics 8 (2000), 1043–1048.
    • (2000) Intermetallics , vol.8 , pp. 1043-1048
    • Lin, C.-K.1    Hong, S.-S.2    Lee, P.-Y.3
  • 260
    • 4344686819 scopus 로고    scopus 로고
    • 3 intermetallic matrix composite prepared by reactive milling and consolidation of powders
    • 3 intermetallic matrix composite prepared by reactive milling and consolidation of powders. J Mater Sci 39 (2004), 5169–5174.
    • (2004) J Mater Sci , vol.39 , pp. 5169-5174
    • Oleszak, D.1
  • 263
    • 0039988553 scopus 로고    scopus 로고
    • Synthesis of NiAl–TiC nanocomposite by mechanical alloying elemental powders
    • [263] Zhou, L.Z., Guo, J.T., Fan, G.J., Synthesis of NiAl–TiC nanocomposite by mechanical alloying elemental powders. Mater Sci Eng A A249 (1998), 103–108.
    • (1998) Mater Sci Eng A , vol.A249 , pp. 103-108
    • Zhou, L.Z.1    Guo, J.T.2    Fan, G.J.3
  • 264
  • 266
    • 70349221114 scopus 로고    scopus 로고
    • 3 reinforced Ni–Fe composite from mechanically alloyed powders by high frequency induction heated sintering
    • 3 reinforced Ni–Fe composite from mechanically alloyed powders by high frequency induction heated sintering. Ceram Int 35 (2009), 3147–3151.
    • (2009) Ceram Int , vol.35 , pp. 3147-3151
    • Park, N.-R.1    Lee, D.-M.2    Ko, I.-Y.3    Yoon, J.-K.4    Shon, I.-J.5
  • 267
    • 77950961687 scopus 로고    scopus 로고
    • Exchange bias and its training effect in Ni/NiO nanocomposites
    • [267] Guo, S., Liu, W., Meng, H., Liu, X.H., Gong, W.J., Han, Z., et al. Exchange bias and its training effect in Ni/NiO nanocomposites. J Alloys Compd 497 (2010), 10–13.
    • (2010) J Alloys Compd , vol.497 , pp. 10-13
    • Guo, S.1    Liu, W.2    Meng, H.3    Liu, X.H.4    Gong, W.J.5    Han, Z.6
  • 269
    • 36149020938 scopus 로고
    • New magnetic anisotropy
    • [269] Meiklejohn, W.H., Bean, C.P., New magnetic anisotropy. Phys Rev 102 (1956), 1413–1414.
    • (1956) Phys Rev , vol.102 , pp. 1413-1414
    • Meiklejohn, W.H.1    Bean, C.P.2
  • 271
    • 43549111409 scopus 로고    scopus 로고
    • Synthesis and characterization of nanocrystalline NiTi intermetallic by mechanical alloying
    • [271] Mousavi, T., Karimzadeh, F., Abbasi, M.H., Synthesis and characterization of nanocrystalline NiTi intermetallic by mechanical alloying. Mater Sci Eng A A487 (2008), 46–51.
    • (2008) Mater Sci Eng A , vol.A487 , pp. 46-51
    • Mousavi, T.1    Karimzadeh, F.2    Abbasi, M.H.3
  • 272
    • 34249840194 scopus 로고
    • Synthesis, properties, and applications of titanium aluminides
    • [272] Froes, F.H., Suryanarayana, C., Eliezer, D., Synthesis, properties, and applications of titanium aluminides. J Mater Sci 27 (1992), 5113–5140.
    • (1992) J Mater Sci , vol.27 , pp. 5113-5140
    • Froes, F.H.1    Suryanarayana, C.2    Eliezer, D.3
  • 273
    • 0032072499 scopus 로고    scopus 로고
    • Microstructure and deformation of two-phase γ-titanium aluminides
    • [273] Appel, F., Wagner, R., Microstructure and deformation of two-phase γ-titanium aluminides. Mater Sci Eng Reports R22 (1998), 187–268.
    • (1998) Mater Sci Eng Reports , vol.R22 , pp. 187-268
    • Appel, F.1    Wagner, R.2
  • 274
    • 0036888720 scopus 로고    scopus 로고
    • Development of biomimetic nano-hydroxyapatite/poly(hexamethylene adipamide) composites
    • [274] Wang, X., Li, Y., Wei, J., de Groot, K., Development of biomimetic nano-hydroxyapatite/poly(hexamethylene adipamide) composites. Biomaterials 23 (2002), 4787–4791.
    • (2002) Biomaterials , vol.23 , pp. 4787-4791
    • Wang, X.1    Li, Y.2    Wei, J.3    de Groot, K.4
  • 275
    • 34347341610 scopus 로고    scopus 로고
    • Effect of ball milling process on the microstructure of titanium–nanohydroxyapatite composite powder
    • [275] Pang, P., Li, W., Liu, Y., Effect of ball milling process on the microstructure of titanium–nanohydroxyapatite composite powder. Rare Metals (China) 26 (2007), 118–123.
    • (2007) Rare Metals (China) , vol.26 , pp. 118-123
    • Pang, P.1    Li, W.2    Liu, Y.3
  • 276
    • 0036796320 scopus 로고    scopus 로고
    • Fabrication and characterization of hydroxyapatite reinforced with 20 vol.% Ti particles for use as hard tissue replacement
    • [276] Chu, C., Lin, P., Dong, Y., Xue, X., Zhu, J., Yin, Z., Fabrication and characterization of hydroxyapatite reinforced with 20 vol.% Ti particles for use as hard tissue replacement. J Mater Sci Mater Med 13 (2002), 985–992.
    • (2002) J Mater Sci Mater Med , vol.13 , pp. 985-992
    • Chu, C.1    Lin, P.2    Dong, Y.3    Xue, X.4    Zhu, J.5    Yin, Z.6
  • 277
    • 58549109202 scopus 로고    scopus 로고
    • Mechanoelectrochemical synthesis of porous Ti-based nanocomposite biomaterials
    • [277] Jakubowicz, J., Jurczyk, K., Niespodziana, K., Jurczyk, M., Mechanoelectrochemical synthesis of porous Ti-based nanocomposite biomaterials. Electrochem Commun 11 (2009), 461–465.
    • (2009) Electrochem Commun , vol.11 , pp. 461-465
    • Jakubowicz, J.1    Jurczyk, K.2    Niespodziana, K.3    Jurczyk, M.4
  • 279
    • 25444472481 scopus 로고
    • In-situ preparation of TiB-reinforced titanium by mechanical alloying
    • J.J. deBarbadillo F.H. Froes R.B. Schwarz ASM International Materials Park (OH)
    • [279] Takahashi, T., In-situ preparation of TiB-reinforced titanium by mechanical alloying. deBarbadillo, J.J., Froes, F.H., Schwarz, R.B., (eds.) Proceedings of the 2nd international conference on mechanical alloying for structural applications, 1993, ASM International, Materials Park (OH), 307–312.
    • (1993) Proceedings of the 2nd international conference on mechanical alloying for structural applications , pp. 307-312
    • Takahashi, T.1
  • 280
    • 0025857960 scopus 로고
    • Rapid solidification processing of titanium alloys
    • [280] Suryanarayana, C., Froes, F.H., Rowe, R.G., Rapid solidification processing of titanium alloys. Int Mater Rev 36 (1991), 85–123.
    • (1991) Int Mater Rev , vol.36 , pp. 85-123
    • Suryanarayana, C.1    Froes, F.H.2    Rowe, R.G.3
  • 281
    • 0024878176 scopus 로고
    • Mechanical alloying of reactive and refractory metals
    • T.G. Gasbarre W.F. Jandeska Jr. et al. (eds.) Metal Powder Industries Federation Princeton (NJ)
    • [281] Suryanarayana, C., Sundaresan, R., Froes, F.H., Mechanical alloying of reactive and refractory metals. Gasbarre, T.G., Jandeska, W.F. Jr., et al. (eds.) Advances in powder metallurgy, vols. 1–3, 1989, Metal Powder Industries Federation, Princeton (NJ), 175–188.
    • (1989) Advances in powder metallurgy , vol.vols. 1–3 , pp. 175-188
    • Suryanarayana, C.1    Sundaresan, R.2    Froes, F.H.3
  • 282
    • 0003731280 scopus 로고
    • Mechanical alloying of titanium alloys
    • F.H. Froes J.J. deBarbadillo ASM International Materials Park (OH)
    • [282] Suryanarayana, C., Sundaresan, R., Froes, F.H., Mechanical alloying of titanium alloys. Froes, F.H., deBarbadillo, J.J., (eds.) Structural applications of mechanical alloying, 1990, ASM International, Materials Park (OH), 193–201.
    • (1990) Structural applications of mechanical alloying , pp. 193-201
    • Suryanarayana, C.1    Sundaresan, R.2    Froes, F.H.3
  • 283
    • 3142750506 scopus 로고    scopus 로고
    • 3Al–SiC nanocomposites using high energy mechanical milling
    • 3Al–SiC nanocomposites using high energy mechanical milling. Mater Sci Eng A A375–377 (2004), 911–916.
    • (2004) Mater Sci Eng A , vol.A375–377 , pp. 911-916
    • Zhang, D.L.1    Liang, J.2    Wu, J.3
  • 284
    • 68649099507 scopus 로고    scopus 로고
    • In-situ TiC particle reinforced Ti–Al matrix composites: powder preparation by mechanical alloying and selective laser melting behavior
    • [284] Gu, D.D., Wang, Z., Shen, Y., Li, Q., Li, Y., In-situ TiC particle reinforced Ti–Al matrix composites: powder preparation by mechanical alloying and selective laser melting behavior. Appl Surf Sci 255 (2009), 9230–9240.
    • (2009) Appl Surf Sci , vol.255 , pp. 9230-9240
    • Gu, D.D.1    Wang, Z.2    Shen, Y.3    Li, Q.4    Li, Y.5
  • 285
    • 77955468484 scopus 로고    scopus 로고
    • 3 nanocomposites by high-energy mechanical alloying: microstructural development and its mechanism
    • 3 nanocomposites by high-energy mechanical alloying: microstructural development and its mechanism. Mater Sci Eng A A527 (2010), 6340–6345.
    • (2010) Mater Sci Eng A , vol.A527 , pp. 6340-6345
    • Gu, D.D.1    Meiners, W.2    Li, C.3    Shen, Y.4
  • 286
    • 0023965532 scopus 로고
    • Synthesis of high temperature materials by self-propagating combustion methods
    • [286] Munir, Z.A., Synthesis of high temperature materials by self-propagating combustion methods. Am Ceram Soc Bull 67 (1988), 342–349.
    • (1988) Am Ceram Soc Bull , vol.67 , pp. 342-349
    • Munir, Z.A.1
  • 287
    • 0038818534 scopus 로고    scopus 로고
    • Alumina–Ti aluminide interpenetrating composites: microstructure and mechanical properties
    • [287] Travitzky, N., Gotman, I., Claussen, N., Alumina–Ti aluminide interpenetrating composites: microstructure and mechanical properties. Mater Lett 57 (2003), 3422–3426.
    • (2003) Mater Lett , vol.57 , pp. 3422-3426
    • Travitzky, N.1    Gotman, I.2    Claussen, N.3
  • 288
    • 0030290382 scopus 로고    scopus 로고
    • Reaction sintering of alumina–aluminide alloys (3A)
    • [288] Claussen, N., Garcia, D.E., Janssen, R., Reaction sintering of alumina–aluminide alloys (3A). J Mater Res 11 (1996), 2884–2888.
    • (1996) J Mater Res , vol.11 , pp. 2884-2888
    • Claussen, N.1    Garcia, D.E.2    Janssen, R.3
  • 289
    • 0032131843 scopus 로고    scopus 로고
    • Mechanical activation of the formation of an alumina–titanium trialuminide composite
    • [289] Welham, N.J., Mechanical activation of the formation of an alumina–titanium trialuminide composite. Intermetallics 6 (1998), 363–368.
    • (1998) Intermetallics , vol.6 , pp. 363-368
    • Welham, N.J.1
  • 292
    • 1842560218 scopus 로고    scopus 로고
    • 3 nanocomposite powder by high-energy ball milling and subsequent heat treatment
    • 3 nanocomposite powder by high-energy ball milling and subsequent heat treatment. J Mater Process Technol 147 (2004), 236–240.
    • (2004) J Mater Process Technol , vol.147 , pp. 236-240
    • Li, J.L.1    Li, F.2    Hu, K.3
  • 296
    • 0242415914 scopus 로고    scopus 로고
    • Processing and mechanical behaviour of TiAl/NiAl intermetallic composites produced by cryogenic mechanical alloying
    • [296] Mao, S.X., McMinn, N.A., Wu, N.Q., Processing and mechanical behaviour of TiAl/NiAl intermetallic composites produced by cryogenic mechanical alloying. Mater Sci Eng A A363 (2003), 275–289.
    • (2003) Mater Sci Eng A , vol.A363 , pp. 275-289
    • Mao, S.X.1    McMinn, N.A.2    Wu, N.Q.3
  • 297
    • 0031130493 scopus 로고    scopus 로고
    • 3 nanocomposite by mechanical alloying and subsequent annealing
    • 3 nanocomposite by mechanical alloying and subsequent annealing. Scr Mater 36 (1997), 1113–1117.
    • (1997) Scr Mater , vol.36 , pp. 1113-1117
    • Liu, K.W.1    Zhang, J.S.2    Wang, J.G.3    Chen, G.L.4
  • 298
    • 0000125825 scopus 로고    scopus 로고
    • Formation of intermetallic nanocomposites in the Ti–Al–Si system by mechanical alloying and subsequent heat treatment
    • [298] Liu, K.W., Zhang, J.S., Wang, J.G., Chen, G.L., Formation of intermetallic nanocomposites in the Ti–Al–Si system by mechanical alloying and subsequent heat treatment. J Mater Res 13 (1998), 1198–1203.
    • (1998) J Mater Res , vol.13 , pp. 1198-1203
    • Liu, K.W.1    Zhang, J.S.2    Wang, J.G.3    Chen, G.L.4
  • 299
    • 0342468732 scopus 로고    scopus 로고
    • Room temperature mechanical behavior of silicon-doped TiAl alloys with grain sizes in the nano- and submicron-range
    • [299] Bohn, R., Klassen, T., Bormann, R., Room temperature mechanical behavior of silicon-doped TiAl alloys with grain sizes in the nano- and submicron-range. Acta Mater 49 (2001), 299–311.
    • (2001) Acta Mater , vol.49 , pp. 299-311
    • Bohn, R.1    Klassen, T.2    Bormann, R.3
  • 300
    • 0035390361 scopus 로고    scopus 로고
    • Mechanical behavior of submicron-grained γ-TiAl-based alloys at elevated temperatures
    • [300] Bohn, R., Klassen, T., Bormann, R., Mechanical behavior of submicron-grained γ-TiAl-based alloys at elevated temperatures. Intermetallics 9 (2001), 559–569.
    • (2001) Intermetallics , vol.9 , pp. 559-569
    • Bohn, R.1    Klassen, T.2    Bormann, R.3
  • 302
    • 1542748729 scopus 로고    scopus 로고
    • Mechanical properties of ultrafine-grained titanium aluminide/titanium silicide composites prepared by high energy milling
    • In: Shaw L, Suryanarayana C, Mishra RS, editors. Warrendale (PA): TMS
    • [302] Klassen T, Bohn R, Suryanarayana C, Fanta G, Bormann R. Mechanical properties of ultrafine-grained titanium aluminide/titanium silicide composites prepared by high energy milling. In: Shaw L, Suryanarayana C, Mishra RS, editors. Processing and properties of structural nanomaterials. Warrendale (PA): TMS; 2003. p. 93–100.
    • (2003) Processing and properties of structural nanomaterials , pp. 93-100
    • Klassen, T.1    Bohn, R.2    Suryanarayana, C.3    Fanta, G.4    Bormann, R.5
  • 305
    • 0030413766 scopus 로고    scopus 로고
    • Phase formation during ball milling of Ti–Al–B powders
    • [305] Brand, K., Suryanarayana, C., Kieback, B.F., Froes, F.H., Phase formation during ball milling of Ti–Al–B powders. Mater Sci Forum 225–227 (1996), 471–476.
    • (1996) Mater Sci Forum , vol.225-227 , pp. 471-476
    • Brand, K.1    Suryanarayana, C.2    Kieback, B.F.3    Froes, F.H.4
  • 310
    • 84870935107 scopus 로고    scopus 로고
    • Mechanical properties of emerging materials
    • [310] Suryanarayana, C., Mechanical properties of emerging materials. Mater Today 15 (2012), 486–498.
    • (2012) Mater Today , vol.15 , pp. 486-498
    • Suryanarayana, C.1
  • 311
    • 33748618443 scopus 로고    scopus 로고
    • Formation and characterization of mechanically alloyed Ti–Cu–Ni–Sn bulk metallic glass composite
    • [311] Jeng, I.-K., Lin, C.-K., Lee, P.-Y., Formation and characterization of mechanically alloyed Ti–Cu–Ni–Sn bulk metallic glass composite. Intermetallics 14 (2006), 957–961.
    • (2006) Intermetallics , vol.14 , pp. 957-961
    • Jeng, I.-K.1    Lin, C.-K.2    Lee, P.-Y.3
  • 313
    • 56049111401 scopus 로고    scopus 로고
    • Synthesis of a nanocrystalline composite W–25 wt.%Ag powder by high energy milling
    • [313] da Costa, F.A., da Silva, A.G.P., Filho, F.A., Gomes, U.U., Vieira, F.A., Synthesis of a nanocrystalline composite W–25 wt.%Ag powder by high energy milling. Powder Technol 188 (2008), 30–33.
    • (2008) Powder Technol , vol.188 , pp. 30-33
    • da Costa, F.A.1    da Silva, A.G.P.2    Filho, F.A.3    Gomes, U.U.4    Vieira, F.A.5
  • 314
    • 33748089040 scopus 로고    scopus 로고
    • Synthesis and characterization of W–Cu nanocomposites developed by mechanical alloying
    • [314] Alam, S.N., Synthesis and characterization of W–Cu nanocomposites developed by mechanical alloying. Mater Sci Eng A A433 (2006), 161–168.
    • (2006) Mater Sci Eng A , vol.A433 , pp. 161-168
    • Alam, S.N.1
  • 315
    • 33845875183 scopus 로고    scopus 로고
    • Structural changes during synthesizing of nanostructured W–20 wt.% Cu composite powder by mechanical alloying
    • [315] Maneshian, A.H., Simchi, A., Razavi Hesabi, Z., Structural changes during synthesizing of nanostructured W–20 wt.% Cu composite powder by mechanical alloying. Mater Sci Eng A A445–446 (2007), 86–93.
    • (2007) Mater Sci Eng A , vol.A445–446 , pp. 86-93
    • Maneshian, A.H.1    Simchi, A.2    Razavi Hesabi, Z.3
  • 316
    • 61449102754 scopus 로고    scopus 로고
    • Mechanically induced driving forces in preparing W–Cu nanocomposite
    • [316] Eghtesadi, S., Parvin, N., Rezaee, M., Salari, M., Mechanically induced driving forces in preparing W–Cu nanocomposite. J Alloys Compd 473 (2009), 557–559.
    • (2009) J Alloys Compd , vol.473 , pp. 557-559
    • Eghtesadi, S.1    Parvin, N.2    Rezaee, M.3    Salari, M.4
  • 317
    • 3242680361 scopus 로고    scopus 로고
    • Phase transformation and thermal stability of mechanically alloyed W–Ni–Fe composite materials
    • [317] Zhang, Z.W., Zhou, J.E., Xi, S.Q., Ran, G., Li, P.L., Phase transformation and thermal stability of mechanically alloyed W–Ni–Fe composite materials. Mater Sci Eng A A379 (2004), 148–153.
    • (2004) Mater Sci Eng A , vol.A379 , pp. 148-153
    • Zhang, Z.W.1    Zhou, J.E.2    Xi, S.Q.3    Ran, G.4    Li, P.L.5
  • 318
    • 76749141982 scopus 로고    scopus 로고
    • Characterization investigations during mechanical alloying and sintering of W–20 vol.% SiC composites
    • [318] Coşkun, S., Öveçoğlu, M.L., Özkal, B., Tanoglu, M., Characterization investigations during mechanical alloying and sintering of W–20 vol.% SiC composites. J Alloys Compd 492 (2010), 576–584.
    • (2010) J Alloys Compd , vol.492 , pp. 576-584
    • Coşkun, S.1    Öveçoğlu, M.L.2    Özkal, B.3    Tanoglu, M.4
  • 319
    • 77950920353 scopus 로고    scopus 로고
    • Microstructural characterizations of Ni activated sintered W–2 wt% TiC composites produced via mechanical alloying
    • [319] Genç, A., Coşkun, S., Öveçoğlu, M.L., Microstructural characterizations of Ni activated sintered W–2 wt% TiC composites produced via mechanical alloying. J Alloys Compd 497 (2010), 80–89.
    • (2010) J Alloys Compd , vol.497 , pp. 80-89
    • Genç, A.1    Coşkun, S.2    Öveçoğlu, M.L.3
  • 321
    • 33947647445 scopus 로고    scopus 로고
    • Fabrication and properties of W–Cu alloy reinforced by multi-walled carbon nanotubes
    • [321] Shi, X.L., Yang, H., Shao, G.Q., Duan, X.L., Yan, L., Xiong, Z., et al. Fabrication and properties of W–Cu alloy reinforced by multi-walled carbon nanotubes. Mater Sci Eng A A457 (2007), 18–23.
    • (2007) Mater Sci Eng A , vol.A457 , pp. 18-23
    • Shi, X.L.1    Yang, H.2    Shao, G.Q.3    Duan, X.L.4    Yan, L.5    Xiong, Z.6
  • 322
    • 0001245732 scopus 로고
    • Engineering properties of borides
    • In: Engineered materials handbook, ceramics and glasses, vol. Materials Park (OH
    • [322] Cutler RA. Engineering properties of borides. In: Engineered materials handbook, ceramics and glasses, vol. 4. Materials Park (OH): ASM International; 1991. p. 787–803.
    • (1991) ASM International , vol.4 , pp. 787-803
    • Cutler, R.A.1
  • 323
    • 0037204504 scopus 로고    scopus 로고
    • 2/TiN nanocomposite powder by high energy ball milling and subsequent heat treatment
    • 2/TiN nanocomposite powder by high energy ball milling and subsequent heat treatment. Mater Sci Eng A A326 (2002), 270–275.
    • (2002) Mater Sci Eng A , vol.A326 , pp. 270-275
    • Li, J.L.1    Hu, K.2    Zhou, Y.3
  • 324
    • 79951680405 scopus 로고    scopus 로고
    • 2 based nanocomposites by mechanical alloying and subsequent heat treatment
    • 2 based nanocomposites by mechanical alloying and subsequent heat treatment. Mater Sci Eng A A528 (2011), 3295–3301.
    • (2011) Mater Sci Eng A , vol.A528 , pp. 3295-3301
    • Abbasi, A.R.1    Shamanian, M.2
  • 325
    • 0035582845 scopus 로고    scopus 로고
    • 2/TiC nanocomposite powder fabricated via high-energy ball milling
    • 2/TiC nanocomposite powder fabricated via high-energy ball milling. J Eur Ceram Soc 21 (2001), 2829–2833.
    • (2001) J Eur Ceram Soc , vol.21 , pp. 2829-2833
    • Li, J.L.1    Li, F.2    Hu, K.3    Zhou, Y.4
  • 326
    • 35748954622 scopus 로고    scopus 로고
    • 4C during ball milling and subsequent heat treatment
    • 4C during ball milling and subsequent heat treatment. J Alloys Compd 448 (2008), 198–201.
    • (2008) J Alloys Compd , vol.448 , pp. 198-201
    • Lu, C.J.1    Li, Z.Q.2
  • 327
    • 0037186321 scopus 로고    scopus 로고
    • 1−x) nanocomposite powder via high-energy ball milling and subsequent heat treatment
    • 1−x) nanocomposite powder via high-energy ball milling and subsequent heat treatment. J Alloys Compd 334 (2002), 253–260.
    • (2002) J Alloys Compd , vol.334 , pp. 253-260
    • Li, J.L.1    Li, F.2    Hu, K.3    Zhou, Y.4
  • 329
    • 0003484135 scopus 로고
    • Transition metal carbides and nitrides
    • Academic Press New York (NY)
    • [329] Toth, L.E., Transition metal carbides and nitrides. 1971, Academic Press, New York (NY).
    • (1971)
    • Toth, L.E.1
  • 332
    • 37349128953 scopus 로고    scopus 로고
    • 3 nanocomposite powder from impure Ti chips, Al and carbon black by mechanical alloying
    • 3 nanocomposite powder from impure Ti chips, Al and carbon black by mechanical alloying. J Alloys Compd 450 (2008), 463–467.
    • (2008) J Alloys Compd , vol.450 , pp. 463-467
    • Razavi, M.1    Rahimipour, M.R.2    Mansoori, R.3
  • 333
    • 70350733473 scopus 로고    scopus 로고
    • Properties and rapid consolidation of nanostructured TiC-based hard materials with various binders by a high-frequency induction heated sintering
    • [333] Woo, K.D., Kim, B.R., Kwon, E.P., Kang, D.S., Shon, I.J., Properties and rapid consolidation of nanostructured TiC-based hard materials with various binders by a high-frequency induction heated sintering. Ceram Int 36 (2010), 351–355.
    • (2010) Ceram Int , vol.36 , pp. 351-355
    • Woo, K.D.1    Kim, B.R.2    Kwon, E.P.3    Kang, D.S.4    Shon, I.J.5
  • 335
    • 0030289489 scopus 로고    scopus 로고
    • Nanostructured WC–Co alloy prepared by mechanical alloying
    • [335] Xueming, M.A., Gang, J.I., Nanostructured WC–Co alloy prepared by mechanical alloying. J Alloys Compd 245 (1996), L30–L32.
    • (1996) J Alloys Compd , vol.245 , pp. L30-L32
    • Xueming, M.A.1    Gang, J.I.2
  • 336
    • 0034318286 scopus 로고    scopus 로고
    • Synthesis and characterizations of ball-milled nanocrystalline WC and nanocomposite WC–Co powders and subsequent consolidations
    • [336] Sherif El-Eskandarany, M., Mahday, A.A., Ahmed, H.A., Amer, A.H., Synthesis and characterizations of ball-milled nanocrystalline WC and nanocomposite WC–Co powders and subsequent consolidations. J Alloys Compd 312 (2000), 315–325.
    • (2000) J Alloys Compd , vol.312 , pp. 315-325
    • Sherif El-Eskandarany, M.1    Mahday, A.A.2    Ahmed, H.A.3    Amer, A.H.4
  • 337
    • 55949091718 scopus 로고    scopus 로고
    • Sintering behavior and mechanical properties of WC–10Co, WC–10Ni and WC–10Fe hard materials produced by high-frequency induction heated sintering
    • [337] Shon, I.J., Jeong, I.K., Ko, I.Y., Doh, J.M., Woo, K.D., Sintering behavior and mechanical properties of WC–10Co, WC–10Ni and WC–10Fe hard materials produced by high-frequency induction heated sintering. Ceram Int 35 (2009), 339–344.
    • (2009) Ceram Int , vol.35 , pp. 339-344
    • Shon, I.J.1    Jeong, I.K.2    Ko, I.Y.3    Doh, J.M.4    Woo, K.D.5
  • 339
    • 14044252801 scopus 로고    scopus 로고
    • 3 materials by room temperature ball milling and subsequent consolidation
    • 3 materials by room temperature ball milling and subsequent consolidation. J Alloys Compd 391 (2005), 228–235.
    • (2005) J Alloys Compd , vol.391 , pp. 228-235
    • Sherif El-Eskandarany, M.1
  • 340
    • 0008546092 scopus 로고    scopus 로고
    • Fabrication of nanocrystalline WC and nanocomposite WC–MgO refractory materials at room temperature
    • [340] Sherif El-Eskandarany, M., Fabrication of nanocrystalline WC and nanocomposite WC–MgO refractory materials at room temperature. J Alloys Compd 296 (2000), 175–182.
    • (2000) J Alloys Compd , vol.296 , pp. 175-182
    • Sherif El-Eskandarany, M.1
  • 342
    • 84861341094 scopus 로고    scopus 로고
    • 3 hard materials consolidated by a pulsed current activated sintering method
    • 3 hard materials consolidated by a pulsed current activated sintering method. Ceram Int 38 (2012), 5133–5138.
    • (2012) Ceram Int , vol.38 , pp. 5133-5138
    • Shon, I.J.1    Na, K.I.2    Ko, I.Y.3    Doh, J.M.4    Yoon, J.K.5
  • 343
    • 77953917409 scopus 로고    scopus 로고
    • Consolidation of binderless nanostructured titanium carbide by high frequency induction heated sintering
    • [343] Shon, I.J., Kim, B.R., Doh, J.M., Yoon, J.K., Consolidation of binderless nanostructured titanium carbide by high frequency induction heated sintering. Ceram Int 36 (2010), 1797–1803.
    • (2010) Ceram Int , vol.36 , pp. 1797-1803
    • Shon, I.J.1    Kim, B.R.2    Doh, J.M.3    Yoon, J.K.4
  • 344
    • 33644580948 scopus 로고    scopus 로고
    • Rapidly sintering nanosized SiC particle reinforced TiC composites by the spark plasma sintering (SPS) technique
    • [344] Wang, L.J., Jiang, W., Chen, L., Rapidly sintering nanosized SiC particle reinforced TiC composites by the spark plasma sintering (SPS) technique. J Mater Sci 39 (2004), 4515–4519.
    • (2004) J Mater Sci , vol.39 , pp. 4515-4519
    • Wang, L.J.1    Jiang, W.2    Chen, L.3
  • 345
    • 3142784251 scopus 로고    scopus 로고
    • Rapid reactive synthesis and sintering of submicron TiC/SiC composites through spark plasma sintering
    • [345] Wang, L.J., Jiang, W., Chen, L., Bai, S.Q., Rapid reactive synthesis and sintering of submicron TiC/SiC composites through spark plasma sintering. J Am Ceram Soc 87 (2004), 1157–1160.
    • (2004) J Am Ceram Soc , vol.87 , pp. 1157-1160
    • Wang, L.J.1    Jiang, W.2    Chen, L.3    Bai, S.Q.4
  • 346
    • 79960310492 scopus 로고    scopus 로고
    • 2/TiC nanocomposite powders fabricated by high-energy ball milling
    • 2/TiC nanocomposite powders fabricated by high-energy ball milling. Ceram Int 37 (2011), 2689–2693.
    • (2011) Ceram Int , vol.37 , pp. 2689-2693
    • Wang, H.H.1    Wu, W.Y.2    Sun, S.C.3    Bian, X.4    Tu, G.F.5
  • 347
    • 0141682642 scopus 로고    scopus 로고
    • Nanostructured WC/Co composite powder prepared by high energy ball milling
    • [347] Zhang, F.L., Wang, C.W., Zhu, M., Nanostructured WC/Co composite powder prepared by high energy ball milling. Scr Mater 49 (2003), 1123–1128.
    • (2003) Scr Mater , vol.49 , pp. 1123-1128
    • Zhang, F.L.1    Wang, C.W.2    Zhu, M.3
  • 348
    • 0030105603 scopus 로고    scopus 로고
    • Allotropic transformation of cobalt induced by ball milling
    • [348] Huang, J.Y., Wu, Y.K., Ye, H.Q., Allotropic transformation of cobalt induced by ball milling. Acta Mater 44 (1996), 1201–1209.
    • (1996) Acta Mater , vol.44 , pp. 1201-1209
    • Huang, J.Y.1    Wu, Y.K.2    Ye, H.Q.3
  • 349
    • 69249229461 scopus 로고    scopus 로고
    • Effects of ball milling time on the synthesis and consoliation of nanostructured WC–10Co composites
    • [349] Hewitt, S.A., Kibble, K.K., Effects of ball milling time on the synthesis and consoliation of nanostructured WC–10Co composites. Int J Refract Metals Hard Mater 27 (2009), 937–948.
    • (2009) Int J Refract Metals Hard Mater , vol.27 , pp. 937-948
    • Hewitt, S.A.1    Kibble, K.K.2
  • 350
    • 53549126315 scopus 로고    scopus 로고
    • Effect of milling temperature on the synthesis and consolidation of nanocomposite WC–10Co powders
    • [350] Hewitt, S.A., Laoui, T., Kibble, K.K., Effect of milling temperature on the synthesis and consolidation of nanocomposite WC–10Co powders. Int J Refract Metals Hard Mater 27 (2009), 66–73.
    • (2009) Int J Refract Metals Hard Mater , vol.27 , pp. 66-73
    • Hewitt, S.A.1    Laoui, T.2    Kibble, K.K.3
  • 351
    • 67349210195 scopus 로고    scopus 로고
    • Synthesis and formation mechanisms of nanocomposite WC–MgO powders by high-energy reactive milling
    • [351] Wu, C.X., Zhu, S.G., Ma, J., Zhang, M.L., Synthesis and formation mechanisms of nanocomposite WC–MgO powders by high-energy reactive milling. J Alloys Compd 478 (2009), 615–619.
    • (2009) J Alloys Compd , vol.478 , pp. 615-619
    • Wu, C.X.1    Zhu, S.G.2    Ma, J.3    Zhang, M.L.4
  • 352
    • 1242351770 scopus 로고    scopus 로고
    • 3/M (Fe, Co, Ni) nanocomposites by mechanical alloying and the catalytic growth of carbon nanotubes
    • 3/M (Fe, Co, Ni) nanocomposites by mechanical alloying and the catalytic growth of carbon nanotubes. Composites B35 (2004), 103–109.
    • (2004) Composites , vol.B35 , pp. 103-109
    • Ding, J.1    Liu, B.H.2    Dong, Z.L.3    Zhong, Z.Y.4    Lin, J.Y.5    White, T.6
  • 355
    • 67649246874 scopus 로고    scopus 로고
    • In situ alumina/aluminum titanate bulk ceramic composites prepared by SPS from different structured composite powders
    • [355] Yang, Y., Wang, Y., Tian, W., Zhao, Y., He, J.Q., Bian, H.M., et al. In situ alumina/aluminum titanate bulk ceramic composites prepared by SPS from different structured composite powders. J Alloys Compd 481 (2009), 858–862.
    • (2009) J Alloys Compd , vol.481 , pp. 858-862
    • Yang, Y.1    Wang, Y.2    Tian, W.3    Zhao, Y.4    He, J.Q.5    Bian, H.M.6
  • 357
    • 0032207437 scopus 로고    scopus 로고
    • Alumina–chromium cermets by hot-pressing of nanocomposite powders
    • [357] Guichard, J.L., Tillement, O., Mocellin, A., Alumina–chromium cermets by hot-pressing of nanocomposite powders. J Eur Ceram Soc 18 (1998), 1743–1752.
    • (1998) J Eur Ceram Soc , vol.18 , pp. 1743-1752
    • Guichard, J.L.1    Tillement, O.2    Mocellin, A.3
  • 358
    • 0031233869 scopus 로고    scopus 로고
    • Preparation and characterization of alumina–iron cermets by hot-pressing of nanocomposite powders
    • [358] Guichard, J.L., Tillement, O., Mocellin, A., Preparation and characterization of alumina–iron cermets by hot-pressing of nanocomposite powders. J Mater Sci 32 (1997), 4513–4521.
    • (1997) J Mater Sci , vol.32 , pp. 4513-4521
    • Guichard, J.L.1    Tillement, O.2    Mocellin, A.3
  • 359
    • 1842560218 scopus 로고    scopus 로고
    • 3 nanocomposite powder by high-energy ball milling and subsequent heat treatment
    • 3 nanocomposite powder by high-energy ball milling and subsequent heat treatment. J Mater Process Technol 147 (2004), 236–240.
    • (2004) J Mater Process Technol , vol.147 , pp. 236-240
    • Li, J.L.1    Li, F.2    Hu, K.3
  • 360
    • 7544231529 scopus 로고    scopus 로고
    • 3–SiC composite tool for machining application
    • 3–SiC composite tool for machining application. Ceram Int 39 (2004), 2081–2086.
    • (2004) Ceram Int , vol.39 , pp. 2081-2086
    • Ko, Y.M.1    Kwon, W.T.2    Kim, Y.W.3
  • 363
    • 33747041400 scopus 로고    scopus 로고
    • 3–TiC nanocomposites fabricated by spark plasma sintering from high-energy ball milled reactants
    • 3–TiC nanocomposites fabricated by spark plasma sintering from high-energy ball milled reactants. J Eur Ceram Soc 26 (2006), 3393–3397.
    • (2006) J Eur Ceram Soc , vol.26 , pp. 3393-3397
    • Zhang, Y.F.1    Wang, L.J.2    Jiang, W.3    Chen, L.4    Bai, G.Z.5
  • 365
    • 0034325504 scopus 로고    scopus 로고
    • Mechanical alloying of alumina–yttria powder mixtures
    • [365] Alkebro, J., Begin-Colin, S., Mocellin, A., Warren, R., Mechanical alloying of alumina–yttria powder mixtures. J Eur Ceram Soc 20 (2000), 2169–2174.
    • (2000) J Eur Ceram Soc , vol.20 , pp. 2169-2174
    • Alkebro, J.1    Begin-Colin, S.2    Mocellin, A.3    Warren, R.4
  • 366
    • 77249138444 scopus 로고    scopus 로고
    • Effect of sintering on structure and mechanical properties of alumina–15 vol.% zirconia nanocomposite compacts
    • [366] Maneshian, M.H., Banerjee, M.K., Effect of sintering on structure and mechanical properties of alumina–15 vol.% zirconia nanocomposite compacts. J Alloys Compd 493 (2010), 613–618.
    • (2010) J Alloys Compd , vol.493 , pp. 613-618
    • Maneshian, M.H.1    Banerjee, M.K.2
  • 367
    • 43749085261 scopus 로고    scopus 로고
    • Reverse martensitic transformation in alumina–15 vol.% zirconia nanostructured powder synthesized by high energy ball milling
    • [367] Maneshian, M.H., Banerjee, M.K., Reverse martensitic transformation in alumina–15 vol.% zirconia nanostructured powder synthesized by high energy ball milling. J Alloys Compd 459 (2008), 531–536.
    • (2008) J Alloys Compd , vol.459 , pp. 531-536
    • Maneshian, M.H.1    Banerjee, M.K.2
  • 369
    • 48349106498 scopus 로고    scopus 로고
    • Nanosized tin-based composite derived by in situ mechanochemical reduction for lithium ion batteries
    • [369] Wang, X., Wen, Z., Yang, X.L., Lin, B., Nanosized tin-based composite derived by in situ mechanochemical reduction for lithium ion batteries. Solid State Ionics 179 (2008), 1238–1241.
    • (2008) Solid State Ionics , vol.179 , pp. 1238-1241
    • Wang, X.1    Wen, Z.2    Yang, X.L.3    Lin, B.4
  • 371
    • 10844245738 scopus 로고    scopus 로고
    • 2 system prepared by mechanical alloying
    • 2 system prepared by mechanical alloying. Physica B 354 (2004), 141–144.
    • (2004) Physica B , vol.354 , pp. 141-144
    • Pozo-López, G.1    Silvetti, S.P.2
  • 374
    • 50649105030 scopus 로고    scopus 로고
    • Synthesis and characterization of silica–titania nanocomposite via a combination of sol–gel and mechanochemical process
    • [374] Ting, P.K., Hussain, Z., Cheong, K.Y., Synthesis and characterization of silica–titania nanocomposite via a combination of sol–gel and mechanochemical process. J Alloys Compd 466 (2008), 304–307.
    • (2008) J Alloys Compd , vol.466 , pp. 304-307
    • Ting, P.K.1    Hussain, Z.2    Cheong, K.Y.3
  • 377
    • 34548818469 scopus 로고    scopus 로고
    • Fabrication and magnetic properties of cobalt-dispersed alumina composites
    • [377] Shi, X., Pan, Y., Guo, J., Fabrication and magnetic properties of cobalt-dispersed alumina composites. Ceram Int 33 (2007), 1509–1513.
    • (2007) Ceram Int , vol.33 , pp. 1509-1513
    • Shi, X.1    Pan, Y.2    Guo, J.3
  • 380
    • 0025251996 scopus 로고
    • The toughening of alumina with nickel inclusions
    • [380] Tuan, W.H., Brook, R.J., The toughening of alumina with nickel inclusions. J Eur Ceram Soc 6 (1990), 31–37.
    • (1990) J Eur Ceram Soc , vol.6 , pp. 31-37
    • Tuan, W.H.1    Brook, R.J.2
  • 381
    • 0031139553 scopus 로고    scopus 로고
    • Reduction and sintering of a nickel-dispersed-alumina composite and its properties
    • [381] Sekino, T., Nakajima, T., Ueda, S., Niihara, K., Reduction and sintering of a nickel-dispersed-alumina composite and its properties. J Am Ceram Soc 80 (1997), 1139–1148.
    • (1997) J Am Ceram Soc , vol.80 , pp. 1139-1148
    • Sekino, T.1    Nakajima, T.2    Ueda, S.3    Niihara, K.4
  • 382
    • 0030285282 scopus 로고    scopus 로고
    • Mechanical and magnetic properties of nickel dispersed alumina-based nanocomposite
    • [382] Sekino, T., Nakajima, T., Niihara, K., Mechanical and magnetic properties of nickel dispersed alumina-based nanocomposite. Mater Lett 29 (1996), 165–169.
    • (1996) Mater Lett , vol.29 , pp. 165-169
    • Sekino, T.1    Nakajima, T.2    Niihara, K.3
  • 390
    • 0026896651 scopus 로고
    • A comparative overview of molybdenum disilicide composites
    • [390] Vasudevan, A.K., Petrovic, J.J., A comparative overview of molybdenum disilicide composites. Mater Sci Eng A A155 (1992), 1–17.
    • (1992) Mater Sci Eng A , vol.A155 , pp. 1-17
    • Vasudevan, A.K.1    Petrovic, J.J.2
  • 391
    • 70649103010 scopus 로고    scopus 로고
    • 2 nanostructured powders via mechanical alloying and following heat treatment
    • 2 nanostructured powders via mechanical alloying and following heat treatment. J Alloys Compd 489 (2010), 379–383.
    • (2010) J Alloys Compd , vol.489 , pp. 379-383
    • Yazdani-rad, R.1    Mirvakili, S.A.2    Zakeri, M.3
  • 394
    • 77954215609 scopus 로고    scopus 로고
    • 4 composite from mechanically alloyed powders by pulsed current-activated sintering
    • 4 composite from mechanically alloyed powders by pulsed current-activated sintering. J Alloys Compd 502 (2010), L10–L13.
    • (2010) J Alloys Compd , vol.502 , pp. L10-L13
    • Ko, I.Y.1    Kang, H.S.2    Doh, J.M.3    Yoon, J.K.4    Shon, I.J.5
  • 395
    • 40749105210 scopus 로고    scopus 로고
    • 4 composites synthesized by mechanical alloying
    • 4 composites synthesized by mechanical alloying. Mater Sci Eng A A479 (2008), 23–30.
    • (2008) Mater Sci Eng A , vol.A479 , pp. 23-30
    • Suryanarayana, C.1
  • 396
    • 0034262612 scopus 로고    scopus 로고
    • 2-based high temperature structural silicides
    • 2-based high temperature structural silicides. Intermetallics 8 (2000), 1175–1182.
    • (2000) Intermetallics , vol.8 , pp. 1175-1182
    • Petrovic, J.J.1
  • 398
    • 74849113230 scopus 로고    scopus 로고
    • 2 nanocrystalline powder by mechanical assistant combustion synthesis method
    • 2 nanocrystalline powder by mechanical assistant combustion synthesis method. Int J Refract Metals Hard Mater 28 (2010), 217–220.
    • (2010) Int J Refract Metals Hard Mater , vol.28 , pp. 217-220
    • Xu, J.G.1    Wu, H.J.2    Li, B.3
  • 399
  • 402
    • 0035389948 scopus 로고    scopus 로고
    • Microstructure, mechanical properties and oxidation behavior of Nb–Si–Al and Nb–Si–N powder compacts prepared by spark plasma sintering
    • [402] Murakami, T., Sasaki, S., Ichikawa, K., Kitahara, A., Microstructure, mechanical properties and oxidation behavior of Nb–Si–Al and Nb–Si–N powder compacts prepared by spark plasma sintering. Intermetallics 9 (2001), 621–628.
    • (2001) Intermetallics , vol.9 , pp. 621-628
    • Murakami, T.1    Sasaki, S.2    Ichikawa, K.3    Kitahara, A.4
  • 404
    • 79955466300 scopus 로고    scopus 로고
    • 2–SiC composite from mechanically activated powders by pulsed current activated combustion synthesis
    • 2–SiC composite from mechanically activated powders by pulsed current activated combustion synthesis. Ceram Int 37 (2011), 1549–1555.
    • (2011) Ceram Int , vol.37 , pp. 1549-1555
    • Shon, I.J.1    Park, J.H.2    Ko, I.Y.3    Doh, J.M.4    Yoon, J.K.5    Nam, K.S.6
  • 405
    • 72149085210 scopus 로고    scopus 로고
    • 2–SiC composite from mechanically activated ZrC + 3Si powders by pulsed current activated combustion synthesis
    • 2–SiC composite from mechanically activated ZrC + 3Si powders by pulsed current activated combustion synthesis. Ceram Int 36 (2010), 817–820.
    • (2010) Ceram Int , vol.36 , pp. 817-820
    • Ko, I.Y.1    Park, J.H.2    Yoon, J.K.3    Nam, K.S.4    Shon, I.J.5
  • 406
    • 77956456777 scopus 로고    scopus 로고
    • Synthesis of AlN–TiN nanostructured composite powder by reactive ball milling and subsequent thermal treatment
    • [406] Amini Mashhadi, H., Manikandan, P., Suetsugu, R., Tanaka, S., Hokamoto, K., Synthesis of AlN–TiN nanostructured composite powder by reactive ball milling and subsequent thermal treatment. J Alloys Compd 506 (2010), 653–660.
    • (2010) J Alloys Compd , vol.506 , pp. 653-660
    • Amini Mashhadi, H.1    Manikandan, P.2    Suetsugu, R.3    Tanaka, S.4    Hokamoto, K.5
  • 407
    • 69249139117 scopus 로고    scopus 로고
    • A mechano- and electrochemically controlled SnSb/C nanocomposite for rechargeable Li-ion batteries
    • [407] Park, C.M., Sohn, H.J., A mechano- and electrochemically controlled SnSb/C nanocomposite for rechargeable Li-ion batteries. Electrochim Acta 54 (2009), 6367–6373.
    • (2009) Electrochim Acta , vol.54 , pp. 6367-6373
    • Park, C.M.1    Sohn, H.J.2
  • 408
    • 0034319393 scopus 로고    scopus 로고
    • Si/TiN nanocomposites novel anode materials for Li-ion batteries
    • [408] Kim, I.S., Kumta, P.N., Blomgren, G.E., Si/TiN nanocomposites novel anode materials for Li-ion batteries. Electrochem Solid State Lett 3 (2000), 493–496.
    • (2000) Electrochem Solid State Lett , vol.3 , pp. 493-496
    • Kim, I.S.1    Kumta, P.N.2    Blomgren, G.E.3
  • 410
    • 1842474294 scopus 로고    scopus 로고
    • Si–SiC nanocomposite anodes synthesized using high-energy mechanical milling
    • [410] Kim, I.S., Blomgren, G.E., Kumta, P.N., Si–SiC nanocomposite anodes synthesized using high-energy mechanical milling. J Power Sour 130 (2004), 275–280.
    • (2004) J Power Sour , vol.130 , pp. 275-280
    • Kim, I.S.1    Blomgren, G.E.2    Kumta, P.N.3
  • 411
    • 4344561947 scopus 로고    scopus 로고
    • High capacity Si/C nanocomposite anodes for Li-ion batteries
    • [411] Kim, I.S., Kumta, P.N., High capacity Si/C nanocomposite anodes for Li-ion batteries. J Power Sour 136 (2004), 145–149.
    • (2004) J Power Sour , vol.136 , pp. 145-149
    • Kim, I.S.1    Kumta, P.N.2
  • 412
    • 15844363481 scopus 로고    scopus 로고
    • Nanocomposites of silicon/titanium carbide synthesized using high-energy mechanical milling for use as anodes in lithium-ion batteries
    • [412] Patel, P., Kim, I.S., Kumta, P.N., Nanocomposites of silicon/titanium carbide synthesized using high-energy mechanical milling for use as anodes in lithium-ion batteries. Mater Sci Eng B B116 (2005), 347–352.
    • (2005) Mater Sci Eng B , vol.B116 , pp. 347-352
    • Patel, P.1    Kim, I.S.2    Kumta, P.N.3
  • 415
    • 84985165126 scopus 로고
    • Room-temperature mechanosynthesis of carbides by grinding of elemental powders
    • [415] Matteazzi, P., Le Cäer, G., Room-temperature mechanosynthesis of carbides by grinding of elemental powders. J Am Ceram Soc 74 (1991), 1382–1390.
    • (1991) J Am Ceram Soc , vol.74 , pp. 1382-1390
    • Matteazzi, P.1    Le Cäer, G.2
  • 417
    • 0032025594 scopus 로고    scopus 로고
    • 4/SiC composite powders through high energy reaction milling
    • 4/SiC composite powders through high energy reaction milling. Mater Sci Eng A A244 (1998), 113–126.
    • (1998) Mater Sci Eng A , vol.A244 , pp. 113-126
    • Shaw, L.L.1    Yang, G.Z.2    Ren, R.M.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.