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Volumn 41, Issue 2, 2006, Pages 181-196

Microstructural study of micron-sized craters simulating Stardust impacts in aluminum 1100 targets

Author keywords

[No Author keywords available]

Indexed keywords

IMPACT STRUCTURE;

EID: 33645472798     PISSN: 10869379     EISSN: None     Source Type: Journal    
DOI: 10.1111/j.1945-5100.2006.tb00202.x     Document Type: Article
Times cited : (11)

References (21)
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    • Effect of initial microstructure on high velocity and hypervelocity impact cratering and crater-related microstructures in thick copper targets Part I: Soda-lime glass projectiles
    • Ferreyna E., Murr L. E., Garcia E. P., and Hörz F. 1997. Effect of initial microstructure on high velocity and hypervelocity impact cratering and crater-related microstructures in thick copper targets Part I: Soda-lime glass projectiles. Journal of Material Science 32:2573-2585.
    • (1997) Journal of Material Science , vol.32 , pp. 2573-2585
    • Ferreyna, E.1    Murr, L.E.2    Garcia, E.P.3    Hörz, F.4
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    • The dispersion of molten soda-lime glass projectiles following penetration of thin aluminium membranes
    • Gwynn D. W., Hörz F., Bernhard R. P., and See T. H. 1997. The dispersion of molten soda-lime glass projectiles following penetration of thin aluminium membranes. International Journal of Impact Engineering 20:325-336.
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    • Penetration experiments in aluminium and teflon targets of widely variable thickness
    • Houston, Texas: Lunar and Planetary Institute
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    • Hörz, F.1    Cintala, M.J.2    Bernhard, R.P.3    See, T.H.4
  • 13
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    • Hypervelocity penetration in aluminium 6061 and 1100 alloys
    • edited by L. E. Murr, K. P. Staudhammer, and M. A. Meyers. Elsevier Science
    • Höz F., Bernhard R. P., and See T. H. 1995. Hypervelocity penetration in aluminium 6061 and 1100 alloys. In Shock wave and high strain rate phenomena, edited by L. E. Murr, K. P. Staudhammer, and M. A. Meyers. Elsevier Science.
    • (1995) Shock Wave and High Strain Rate Phenomena
    • Hörz, F.1    Bernhard, R.P.2    See, T.H.3
  • 14
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    • Impact features and projectile residues in aerogel exposed on Mir
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.