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A VARIATIONAL MODEL OF FERROELECTRIC MICROSTRUCTURE

机译:铁电微观结构的变化模型

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摘要

A simple model of the evolution of ferroelectric microstructure in single crystals is developed by using variational methods to minimize a functional based on free energy and dissipation. The thermodynamic variables in this formulation correspond to the positions of a set of domain walls within a single ferroelectric crystal. The total dissipation rate is taken to be a function of the velocities of the individual domain walls. With only two-degrees of freedom, a model of this type has sufficient richness to reproduce many of the observed features found in the single crystal response of a tetragonal ferroelectric. This includes the dielectric hysteresis, butterfly hysteresis, and the variation of the hysteresis loops under uniaxial compressive stress. Additional degrees of freedom can be used to capture multi-axiality. The model also highlights the marked differences in response that should occur when a single crystal is subjected to different boundary conditions.
机译:通过使用变分方法以最小化基于自由能和耗散的功能,开发了单晶中铁电微结构演化的简单模型。该公式中的热力学变量对应于单个铁电晶体内一组畴壁的位置。总耗散率被认为是各个畴壁的速度的函数。仅具有两个自由度,这种类型的模型就具有足够的丰富性,可以重现在四方铁电体的单晶响应中发现的许多观察到的特征。这包括介电磁滞,蝶形磁滞以及单轴压缩应力下磁滞回线的变化。可以使用其他自由度来捕获多轴性。该模型还突出显示了当单晶经受不同边界条件时应发生的明显响应差异。

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