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Ferroelectric switching: a micromechanics model versus measured behaviour

机译:铁电开关:微力学模型与测量行为

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The behaviour of ferroelectric polycrystals is explored using a rate-independent crystal plasticity model with self-consistent homogenisation to capture grain-grain interactions. Dimensionless parameters are introduced that allow a simple connection to be made between material constants and the nonlinear ferroelectric behaviour. In particular, combinations of material parameters are identified that cause remanent straining to be strongly suppressed. The self-consistent scheme allows for the ferroelectric response of a composite of grains with distinct sets of switching systems to be modelled. This feature is used to explore the effect of pinned domain walls and of dielectric inclusions. The model is able to reproduce the electrical response of three materials (PZT-5H, PZT-4D and Barium Titanate) under proportional stress and electric field loading, as measured in a parallel study.
机译:铁电多晶的行为是使用速率独立的晶体可塑性模型进行的,该模型具有自洽的均质性以捕获晶粒间的相互作用。引入了无量纲参数,这些参数允许在材料常数和非线性铁电行为之间建立简单的连接。特别地,识别出导致剩余应变被强烈抑制的材料参数的组合。自洽方案允许对具有不同开关系统集的谷物复合材料的铁电响应进行建模。此功能用于探索固定畴壁和介电夹杂物的影响。该模型能够再现在比例应力和电场载荷下三种材料(PZT-5H,PZT-4D和钛酸钡)的电响应,这是在一项并行研究中测得的。

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