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首页> 外文期刊>International Journal of Fracture >Phase field simulation of domain structures in ferroelectric materials within the context of inhomogeneity evolution
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Phase field simulation of domain structures in ferroelectric materials within the context of inhomogeneity evolution

机译:非均匀性演化背景下铁电材料畴结构的相场模拟

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摘要

A phase field model for simulating the domain structures in ferroelectric materials is proposed. It takes mechanical and electric fields into account, thus allowing for switching processes due to mechanical and/or electrical loads. The central idea of the model is to take the spontaneous polarisation as an order parameter and to provide an evolution law for this parameter. The concept of evolving inhomogeneities (configuratioanl forces) can be used in this context, as the Spatial distribution of the spontaneous polarisation describes the inhomogeneity of the system. The evolution is found to be in agreement with the second law of thermodynamics and to resemble the (classical) Ginzburg-Landau equation. Numerical simulations show the features of the model and the interaction of domain structures with defects.
机译:提出了一种模拟铁电材料畴结构的相场模型。它考虑到了机械和电场,因此允许由于机械和/或电气负载进行切换过程。该模型的中心思想是将自发极化作为有序参数,并为该参数提供演化规律。由于自发极化的空间分布描述了系统的不均匀性,因此在这种情况下可以使用不断发展的不均匀性(构型力)的概念。发现该演化与热力学第二定律一致,并且类似于(经典的)Ginzburg-Landau方程。数值模拟显示了模型的特征以及缺陷与缺陷域结构的相互作用。

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