Finite element modeling of lead magnesium niobate electrostrictive materials: Static analysis

被引:25
|
作者
Debus, JC [1 ]
Dubus, B [1 ]
Coutte, J [1 ]
机构
[1] Dept ISEN, UMR CNRS 9929, Inst Elect & Microelect N, F-59046 Lille, France
来源
关键词
D O I
10.1121/1.423047
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
New lead magnesium niobate (PMN) ceramics, which can generate large strains at moderate electric fields, are good candidates for future actuators or sonar projectors. In this paper, two finite element models are proposed to describe static analysis of electrostrictive materials. Both models include quadratic dependence of strain with electrical displacement, assume constant temperature, and exclude hysteresis. One of the models includes the saturation of the polarization. The theoretical formulation is justified by the method of the weighted residuals. The numerical implementation is presented. The validation is performed by comparing numerical results with measurements for a PMN bar subjected to mechanical prestress and de electric field. (C) 1998 Acoustical Society of America.
引用
收藏
页码:3336 / 3343
页数:8
相关论文
共 50 条
  • [31] Finite element modeling of static tire enveloping characteristics
    V. Alkan
    S. M. Karamihas
    G. Anlas
    International Journal of Automotive Technology, 2011, 12 : 529 - 535
  • [32] Finite element modeling of static tire enveloping characteristics
    Alkan, V.
    Karamihas, S. M.
    Anlas, G.
    INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 2011, 12 (04) : 529 - 535
  • [33] Finite element modeling of hip implant static loading
    Colic, Katarina
    Sedmak, Aleksandar
    Grbovic, Aleksandar
    Tatic, Uros
    Sedmak, Simon
    Djordjevic, Branislav
    INTERNATIONAL CONFERENCE ON MANUFACTURING ENGINEERING AND MATERIALS, ICMEM 2016, 2016, 149 : 257 - 262
  • [34] MODELING OF HETEROGENEOUS MATERIALS USING A MESOSCOPIC SCALE FINITE ELEMENT ANALYSIS
    Pituba, Jose J. C.
    Fernandes, Gabriela R.
    de Souza Neto, Eduardo A.
    11TH WORLD CONGRESS ON COMPUTATIONAL MECHANICS; 5TH EUROPEAN CONFERENCE ON COMPUTATIONAL MECHANICS; 6TH EUROPEAN CONFERENCE ON COMPUTATIONAL FLUID DYNAMICS, VOLS II - IV, 2014, : 3513 - 3523
  • [35] Finite element analysis and modeling
    Heine, Hans J.
    Foundry Management and Technology, 1993, 121 (04):
  • [36] Nonlinear strain and DC bias induced piezoelectric behaviour of electrostrictive lead magnesium niobate-lead titanate ceramics under high electric fields
    Ren, W
    Masys, AJ
    Yang, G
    Mukherjee, BK
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2002, 35 (13) : 1550 - 1554
  • [37] Coupled finite element modeling of piezothermoelastic materials
    Senousy, M. S.
    Rajapakse, R. K. N. D.
    Gadala, M.
    BEHAVIOR AND MECHANICS OF MULTIFUNCTIONAL AND COMPOSITE MATERIALS 2007, 2007, 6526
  • [38] Finite element modeling for interconnect materials and structures
    Bassman, L
    Pinsky, P
    Deal, M
    ADVANCED INTERCONNECTS AND CONTACT MATERIALS AND PROCESSES FOR FUTURE INTEGRATED CIRCUITS, 1998, 514 : 299 - 299
  • [39] Structural Static Characteristic Analysis of Lower Limb Exoskeleton Based on Finite Element Modeling
    Pan, Liai
    He, Chunshan
    Li, Qinghua
    PROCEEDINGS OF THE 3RD INTERNATIONAL CONFERENCE ON MECHANICAL ENGINEERING AND INTELLIGENT SYSTEMS (ICMEIS 2015), 2015, 26 : 104 - 109
  • [40] Thermal decomposition and kinetic analysis of relaxor ferroelectric lead magnesium niobate
    Lu, CH
    Wen, CY
    JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 1998, 18 (11) : 1599 - 1607