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Micromechanical Modelling Of Remanent Properties Of Morphotropic PZT

机译:趋向性PZT剩余性能的微力学建模

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The present paper investigates the capability of micromechanical material models to predict the ferroelectric behaviour of morphotropic PZT ceramics in a rate-independent approximation based on realistic microscopic material parameters. Starting point is a three-dimensional tetragonal model, which builds on the model of Pathak and McMeeking [2008. Three-dimensional finite element simulations of ferroelectric polycrystals under electrical and mechanical loading. Journal of the Mechanics and Physics of Solids 56, 663-683). Volume fractions of the crystallographic variants represent the domain structure inside the grains. Interactions between the grains are taken into account by means of a representative volume element of the grain compound. A simplified set of realistic microscopic material parameters of the lattice in terms of Young's modulus, Poisson's ratio, dielectric constant, and spontaneous strain and polarisation is derived from experimental data and theoretical results given in the literature. The simulation of the macroscopic remanent polarisation and strain response due to two load cases shows explicitly that the tetragonal model is not capable to reproduce the behaviour of morphotropic PZT. Therefore, the model is extended by the rhombohedral phase, allowing a mixture of both phases with varying quantities inside the grains. A comparison of our results with experimental data shows a remarkably good agreement, revealing the capability of the extended model.
机译:本文研究了微机械材料模型基于实际的微观材料参数,以速率无关的近似方式预测同晶PZT陶瓷铁电性能的能力。起点是三维三维四边形模型,该模型建立在Pathak和McMeeking [2008。电气和机械载荷下铁电多晶的三维有限元模拟。固体力学与物理学杂志56,663-683)。晶体学变体的体积分数代表晶粒内部的畴结构。借助粒料的代表性体积元素考虑了粒料之间的相互作用。从杨氏模量,泊松比,介电常数,自发应变和极化方面简化了一组现实的微观材料参数,这是从实验数据和文献中给出的理论结果得出的。由两种载荷情况引起的宏观剩余极化和应变响应的仿真清楚地表明,四方模型不能重现同相PZT的行为。因此,模型通过菱形面相扩展,允许晶粒内部具有变化数量的两个相的混合物。我们的结果与实验数据的比较显示出非常好的一致性,从而揭示了扩展模型的功能。

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