期刊文献+

Energy principle of ferroelectric ceramics and single domain mechanical model 被引量:5

Energy principle of ferroelectric ceramics and single domain mechanical model
下载PDF
导出
摘要 Many physical experiments have shown that the domain switching in a ferroelectric material is a complicated evolution process of the domain wall with the variation of stress and electric field. According to this mechanism, the volume fraction of the domain switching is introduced in the constitutive law of ferroelectric ceramic and used to study the nonlinear constitutive behavior of ferroelectric body in this paper. The principle of stationary total energy is put forward in which the basic unknown quantities are the displacement ui, electric displacement Di and volume fraction pI of the domain switching for the variant I. Mechanical field equation and a new domain switching criterion are obtained from the principle of stationary total energy. The domain switching criterion proposed in this paper is an expansion and development of the energy criterion. On the basis of the domain switching criterion, a set of linear algebraic equations for the volume fraction PI of domain switching is obtained, in which the coefficients of the linear algebraic equations only contain the unknown strain and electric fields. Then a single domain mechanical model is proposed in this paper. The poled ferroelectric specimen is considered as a transversely isotropic single domain. By using the partial experimental results, the hardening relation between the driving force of domain switching and the volume fraction of domain switching can be calibrated. Then the electromechanical response can be calculated on the basis of the calibrated hardening relation. The results involve the electric butterfly shaped curves of axial strain versus axial electric field, the hysteresis loops of electric displacement versus electric filed and the evo- lution process of the domain switching in the ferroelectric specimens under uniaxial coupled stress and electric field loading. The present theoretic prediction agrees reasonably with the experimental results given by Lynch. Many physical experiments have shown that the domain switching in a ferroelectric material is a complicated evolution process of the domain wall with the variation of stress and electric field. According to this mechanism, the volume fraction of the domain switching is introduced in the constitutive law of ferroelectric ceramic and used to study the nonlinear constitutive behavior of ferroelectric body in this paper. The principle of stationary total energy is put forward in which the basic unknown quantities are the displacement ui, electric displacement Di and volume fraction pI of the domain switching for the variant I. Mechanical field equation and a new domain switching criterion are obtained from the principle of stationary total energy. The domain switching criterion proposed in this paper is an expansion and development of the energy criterion. On the basis of the domain switching criterion, a set of linear algebraic equations for the volume fraction PI of domain switching is obtained, in which the coefficients of the linear algebraic equations only contain the unknown strain and electric fields. Then a single domain mechanical model is proposed in this paper. The poled ferroelectric specimen is considered as a transversely isotropic single domain. By using the partial experimental results, the hardening relation between the driving force of domain switching and the volume fraction of domain switching can be calibrated. Then the electromechanical response can be calculated on the basis of the calibrated hardening relation. The results involve the electric butterfly shaped curves of axial strain versus axial electric field, the hysteresis loops of electric displacement versus electric filed and the evo- lution process of the domain switching in the ferroelectric specimens under uniaxial coupled stress and electric field loading. The present theoretic prediction agrees reasonably with the experimental results given by Lynch.
作者 T.C.Wang
机构地区 LNM
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2007年第5期531-543,共13页 力学学报(英文版)
基金 The project supported by the National Natural Science Foundation of China(10572138)
关键词 Ferroelectric ceramic Domain switching The volume fraction of domain switching Single domain mechanical model Ferroelectric ceramic Domain switching The volume fraction of domain switching Single domain mechanical model
  • 相关文献

参考文献3

二级参考文献24

  • 1Hill M D,J Am Ceram Soc,1996年,79卷,1915页
  • 2Zhang Y,J Am Ceram Soc,1995年,78卷,3290页
  • 3Kim S,Technical Report No. 5, ONR Contract No. N00014-94-0053,1995年
  • 4Jiang Q,J Am Ceram Soc,1994年,77卷,211页
  • 5Fan D, Li CQ. Nonlinear electric-mechanical behavior of a soft PZT-51 ferroelectric ceramic. Journal of Materials Science, 1999, 34:4001~4010.
  • 6Zhou DY, Kamlah M, Munz D. Uniaxial compressive stress dependence of the high-field dielectric and piezoelectric performance of soft PZT piezocermics. J Mater Res, 2004,19(3): 834~841.
  • 7Chaplya PM, Carman GP. Dielectric and piezoelectric response of lead zirconate-lead titanate at high electric and mechanical loads in terms of non- 180° domain wall motion.J Appl Phys, 2001, 90:5278~5286.
  • 8Cao H, Evans A. Nonlinear deformation of ferroelectric ceramics. J Am Ceram Soc, 1993, 76(4): 890~895.
  • 9Schaufele AB, Hardtl KH. Ferroelectric properties of lead zirconate titanate ceramics. J Am Ceram Soc, 1996,79(10): 2637~2640.
  • 10Fett T, Munz D, Thun G. Stress-strain behaviour of a soft PZT ceramic under tensile and compression loading and a transverse electric field. Ferroelectric, 2003, 297:83~90.

共引文献19

同被引文献52

引证文献5

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部