메뉴 건너뛰기




Volumn 40, Issue 1, 1993, Pages 41-49

Modeling 1–3 Composite Piezoelectrics: Hydrostatic Response

Author keywords

[No Author keywords available]

Indexed keywords


EID: 84943682563     PISSN: 08853010     EISSN: None     Source Type: Journal    
DOI: 10.1109/58.184997     Document Type: Article
Times cited : (173)

References (32)
  • 1
    • 0017969016 scopus 로고
    • Connectivity and piezoelectric-pyroelectric composites
    • R. E. Newnham, D. P. Skinner, and L. E. Cross, “Connectivity and piezoelectric-pyroelectric composites,” Materials Res. Bull., vol. 13, pp. 525–536, 1978.
    • (1978) Materials Res. Bull. , vol.13 , pp. 525-536
    • Newnham, R.E.1    Skinner, D.P.2    Cross, L.E.3
  • 4
    • 0020848096 scopus 로고
    • Recent developments of piezoelectric ceramic products and composites of synthetic rubber and piezoelectric ceramic particles
    • H. Banno, “Recent developments of piezoelectric ceramic products and composites of synthetic rubber and piezoelectric ceramic particles,” Ferroelec., vol. 50, pp. 3–12, 1983.
    • (1983) Ferroelec. , vol.50 , pp. 3-12
    • Banno, H.1
  • 7
    • 0000897553 scopus 로고
    • Composite Piezoelectric Sensors
    • R. E. Tressler, G. L. Messing, C. G. Pantano, and R. E. Newnham, Fds. New York: Plenum
    • A. Safari, G. Sa-gong, J. Giniewicz, and R. E. Newnham, “Composite Piezoelectric Sensors,” in Tailoring Multiphase and Composite Ceramics, R. E. Tressler, G. L. Messing, C. G. Pantano, and R. E. Newnham, Fds. New York: Plenum, 1986, pp. 445–454.
    • (1986) Tailoring Multiphase and Composite Ceramics , pp. 445-454
    • Safari, A.1    Sa-gong, G.2    Giniewicz, J.3    Newnham, R.E.4
  • 8
    • 0002319848 scopus 로고
    • Piezo-electric ceramic-polymer composites for transducer applications
    • L. M. Levinson, Ed. New York: Marcel Dekker
    • T. R. Gururaja, A. Safari, R. E. Newnham, and L. E. Cross, “Piezo-electric ceramic-polymer composites for transducer applications,” in Electronic Ceramics, L. M. Levinson, Ed. New York: Marcel Dekker, 1988, pp. 92–128.
    • (1988) Electronic Ceramics , pp. 92-128
    • Gururaja, T.R.1    Safari, A.2    Newnham, R.E.3    Cross, L.E.4
  • 9
    • 0024872082 scopus 로고
    • The role of piezocomposites in ultrasonic transducers
    • See the extensive set of references in the review paper
    • See the extensive set of references in the review paper: W. A. Smith, “The role of piezocomposites in ultrasonic transducers,” in Proc. 1989 IEEE Ultrason. Symp., 1989, pp. 755–766.
    • (1989) Proc. 1989 IEEE Ultrason. Symp. , pp. 755-766
    • Smith, W.A.1
  • 10
    • 0026982066 scopus 로고    scopus 로고
    • The application of 1 – 3 piezocomposites in acoustic transducers
    • W. A. Smith, “The application of 1–3 piezocomposites in acoustic transducers,” in Proc. 1990 IEEE Int. Symp. Appl. Ferroelec., pp. 145–152.
    • Proc. 1990 IEEE Int. Symp. Appl. Ferroelec. , pp. 145-152
    • Smith, W.A.1
  • 11
    • 0026062827 scopus 로고
    • Modeling 1 – 3 composite piezoelectrics: Thickness-mode oscillations
    • W. A. Smith and B. A. Auld, “Modeling 1–3 composite piezoelectrics: Thickness-mode oscillations,” IEEE Trans. Ultrason., Ferroelec., Freq. Contrvol. 38, pp. 40–47, 1991.
    • (1991) IEEE Trans. Ultrason., Ferroelec., Freq. Contr. , vol.38 , pp. 40-47
    • Smith, W.A.1    Auld, B.A.2
  • 12
    • 0022289002 scopus 로고
    • Tailoring the properties of composite piezoelectric materials for medical ultrasonic transducers
    • W. A. Smith, A. Shaulov, and B. A. Auld, “Tailoring the properties of composite piezoelectric materials for medical ultrasonic transducers,” in Proc. 1985 IEEE Ultrason. Symp., pp. 642–647, 1985.
    • (1985) Proc. 1985 IEEE Ultrason. Symp. , pp. 642-647
    • Smith, W.A.1    Shaulov, A.2    Auld, B.A.3
  • 13
    • 0000329378 scopus 로고
    • An experimental and theoretical study of 1-3 and 1-3-0 piezoelectric PZT-polymer composites for hydrophone applications
    • M. J. Haun and R. E. Newnham, “An experimental and theoretical study of 1–3 and 1-3-0 piezoelectric PZT-polymer composites for hydrophone applications” Ferroelec. vol. 68, pp. 123–139, 1986.
    • (1986) Ferroelec. , vol.68 , pp. 123-139
    • Haun, M.J.1    Newnham, R.E.2
  • 14
    • 0020844930 scopus 로고
    • Transversely reinforced 1-3 and 1-3-0 piezoelectric composites
    • M. J. Haun, P. Moses. T. R. Gururaja, W. A. Schulze, and R. E. Newnham, “Transversely reinforced 1–3 and 1-3-0 piezoelectric composites,” Ferroelec., vol. 49, pp. 259–264, 1983.
    • (1983) Ferroelec. , vol.49 , pp. 259-264
    • Haun, M.J.1    Moses, P.2    Gururaja, T.R.3    Schulze, W.A.4    Newnham, R.E.5
  • 15
    • 0025576723 scopus 로고
    • Calculating the hydrophone response of piezoceramic-rod/piezopolymer-matrix composites
    • W. A. Smith, “Calculating the hydrophone response of piezoceramic-rod/piezopolymer-matrix composites,” in Proc. 1990 IEEE Ultrason. Symp., 1990, pp. 757–761.
    • (1990) Proc. 1990 IEEE Ultrason. Symp. , pp. 757-761
    • Smith, W.A.1
  • 16
    • 79951673265 scopus 로고
    • Piezoelectric ceramic/polymer 1 – 3 composites for ultrasonic transducer applications
    • Ph. D. dissertation, Macquarie University, Sidney: Australia, July
    • H. L. W. Chan, “Piezoelectric ceramic/polymer 1–3 composites for ultrasonic transducer applications,” Ph. D. dissertation, Macquarie University, Sidney: Australia, July 1987.
    • (1987)
    • Chan, H.L.W.1
  • 17
    • 0024704565 scopus 로고
    • Simple model for piezoelectric ceramic/polymer 1 – 3 composites used in ultrasonic transducer applications
    • H. L. W. Chan and J. Unsworth, “Simple model for piezoelectric ceramic/polymer 1–3 composites used in ultrasonic transducer applications,” IEEE Trans. Ultrason., Ferroelec., Freq. Contr., vol. 36, pp. 434–441, 1989.
    • (1989) IEEE Trans. Ultrason., Ferroelec., Freq. Contr. , vol.36 , pp. 434-441
    • Chan, H.L.W.1    Unsworth, J.2
  • 18
    • 0022955350 scopus 로고
    • Elastic, piezoelectric and dielectric properties of composite materials
    • K. Y. Hashimoto and M. Yamaguchi, “Elastic, piezoelectric and dielectric properties of composite materials,” in Proc. 1986 IEEE Ultrason. Symp., 1986, pp. 697–702.
    • (1986) Proc. 1986 IEEE Ultrason. Symp. , pp. 697-702
    • Hashimoto, K.Y.1    Yamaguchi, M.2
  • 19
    • 0003728298 scopus 로고
    • Analysis and development of piezoelectric composites for medical ultrasound transducer applications
    • Ph. D. dissertation, The Pennsylvania State University, University Park, PA, May
    • C. G. Oakley, “Analysis and development of piezoelectric composites for medical ultrasound transducer applications,” Ph. D. dissertation, The Pennsylvania State University, University Park, PA, May 1991.
    • (1991)
    • Oakley, C.G.1
  • 20
    • 84957160664 scopus 로고
    • (Pb, Ca)((Co1/2 W1/2), Ti)O3 piezoelectric ceramics and their applications
    • suppl. 20–4
    • Y. Yamashita, K. Yokoyama, H. Honda and H. Okuma, “(Pb, Ca)((Co1/2 W1/2), Ti)O3 piezoelectric ceramics and their applications” Japanese J. Appl. Phys., vol. 20, suppl. 20–4, pp. 183–187, 1981.
    • (1981) Japanese J. Appl. Phys. , vol.20 , pp. 183-187
    • Yamashita, Y.1    Yokoyama, K.2    Honda, H.3    Okuma, H.4
  • 21
    • 0020192987 scopus 로고
    • Electromechanical properties of (Pb, Ln)(Ti, Mn)|O3 ceramics (Ln=rare earths),” J. Acoust
    • H. Takeuchi, S. Jyomura, E. Yamamoto and Y. Ito, “Electromechanical properties of (Pb, Ln)(Ti, Mn)|O3 ceramics (Ln=rare earths),” J. Acoust. Soc. Amer., vol. 72, pp. 1114—1120. 1982.
    • (1982) Soc. Amer. , vol.72 , pp. 1114-1120
    • Takeuchi, H.1    Jyomura, S.2    Yamamoto, E.3    Ito, Y.4
  • 22
    • 84963122866 scopus 로고
    • Modified lead-titanate/polymer composites for hydrophone applications
    • A. A. Shaulov, W. A. Smith and R. Y. Ting, “Modified lead-titanate/polymer composites for hydrophone applications,” Ferroelec., vol. 93, pp. 177–182, 1989.
    • (1989) Ferroelec. , vol.93 , pp. 177-182
    • Shaulov, A.A.1    Smith, W.A.2    Ting, R.Y.3
  • 23
    • 0024170123 scopus 로고
    • Enhanced lateral electromechanical coupling in lead-titanate-rod/polymer piezoelectric composites
    • W. A. Smith, A. A. Shaulov, and R. Y. Ting, “Enhanced lateral electromechanical coupling in lead-titanate-rod/polymer piezoelectric composites,” in Proc. IEEE Ultrason. Symp., 1988, pp. 617–622.
    • (1988) Proc. IEEE Ultrason. Symp. , pp. 617-622
    • Smith, W.A.1    Shaulov, A.A.2    Ting, R.Y.3
  • 24
    • 0025575275 scopus 로고
    • Piezoelectric properties of 1 – 3 composites of calcium-modified lead titanate in epoxy resins
    • R. Y. Ting, A. A. Shaulov, and W. A. Smith, “Piezoelectric properties of 1–3 composites of calcium-modified lead titanate in epoxy resins,” in Proc. IEEE Ultrason. Symp., 1990, pp. 707–710.
    • (1990) Proc. IEEE Ultrason. Symp. , pp. 707-710
    • Ting, R.Y.1    Shaulov, A.A.2    Smith, W.A.3
  • 25
    • 0023596145 scopus 로고
    • Finite element method analysis of dispersion characteristics for 1 – 3 type piezoelectric composites
    • M. Yamaguchi, K. Y. Hashimoto. and H. Makita, “Finite element method analysis of dispersion characteristics for 1–3 type piezoelectric composites,” in Proc. 1987 IEEE Ultrason. Symp., 1987, pp. 657–661.
    • (1987) Proc. 1987 IEEE Ultrason. Symp. , pp. 657-661
    • Yamaguchi, M.1    Hashimoto, K.Y.2    Makita, H.3
  • 26
    • 0024170886 scopus 로고
    • A complete finite element eigenmode analysis for a 1 – 3 type of piezoelectric composite transducer including the effect of fluid loading and internal losses
    • J. H. Jeng, X. Q. Bao, V. V. Varadan, and V. K. Varadan, “A complete finite element eigenmode analysis for a 1–3 type of piezoelectric composite transducer including the effect of fluid loading and internal losses,” in Proc. 1988 IEEE Ultrason. Symp., 1988, pp. 685–688.
    • (1988) Proc. 1988 IEEE Ultrason. Symp. , pp. 685-688
    • Jeng, J.H.1    Bao, X.Q.2    Varadan, V.V.3    Varadan, V.K.4
  • 27
    • 84941457924 scopus 로고
    • Computer models for the analysis and design of 1 – 3 composite transducers
    • G. Hayward and J. Hossack, “Computer models for the analysis and design of 1–3 composite transducers,” in Ultrason. Int. 89 Conf. Proc., 1989, pp. 531–536.
    • (1989) Ultrason. Int. 89 Conf. Proc. , pp. 531-536
    • Hayward, G.1    Hossack, J.2
  • 28
    • 84941439398 scopus 로고
    • Design and evaluation of one and two dimensional composite transducer arrays using finite element analysis
    • J. Hossack and G. Hayward, “Design and evaluation of one and two dimensional composite transducer arrays using finite element analysis,” in Ultrason. Int. 89 Conf. Proc., 1989, pp. 442—447.
    • (1989) Ultrason. Int. 89 Conf. Proc. , pp. 442-447
    • Hossack, J.1    Hayward, G.2
  • 29
    • 0024872370 scopus 로고
    • The modeling and design of composite piezoelectric arrays
    • J. Hossack, Y. Gorfu, and G. Hayward, “The modeling and design of composite piezoelectric arrays,” in Proc. 1989 IEEE Ultrason. Symp., 1989, pp. 793–796.
    • (1989) Proc. 1989 IEEE Ultrason. Symp. , pp. 793-796
    • Hossack, J.1    Gorfu, Y.2    Hayward, G.3
  • 30
    • 0026256897 scopus 로고
    • Finite-element analysis of 1 – 3 composite piezoelectric transducers
    • G. Hayward and J. A. Hossack, “Finite-element analysis of 1–3 composite piezoelectric transducers,” IEEE Trans. Ultrason., Ferroelec., Freq. Contr., vol. 38, pp. 618–629, 1991.
    • (1991) IEEE Trans. Ultrason., Ferroelec., Freq. Contr. , vol.38 , pp. 618-629
    • Hayward, G.1    Hossack, J.A.2
  • 31
    • 0025044863 scopus 로고
    • Unidimensional modeling of 1 – 3 composite transducers
    • G. Hayward and J. Hossack, “Unidimensional modeling of 1–3 composite transducers,” J. Acoust. Soc. Amer., vol. 88, pp. 599–608, 1990.
    • (1990) J. Acoust. Soc. Amer. , vol.88 , pp. 599-608
    • Hayward, G.1    Hossack, J.2
  • 32
    • 0003763480 scopus 로고
    • Modeling techniques for 1 – 3 composite transducers
    • Ph.D. dissertation, Univ. Strathclyde, Glasgow, United Kingdom, Mar.
    • J. A. Hossack, “Modeling techniques for 1–3 composite transducers,” Ph.D. dissertation, Univ. Strathclyde, Glasgow, United Kingdom, Mar. 1990.
    • (1990)
    • Hossack, J.A.1


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.