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首页> 外文期刊>Acta Metallurgica et Materialia >FERROELECTRIC/FERROELASTIC INTERACTIONS AND A POLARIZATION SWITCHING MODEL
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FERROELECTRIC/FERROELASTIC INTERACTIONS AND A POLARIZATION SWITCHING MODEL

机译:铁电/铁弹性相互作用和极化转换模型

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Ferroelectric and ferroelastic switching cause ferroelectric ceramics to depolarize and deform when subjected to excessive electric field or stress. Switching is the source of the classic butterfly shaped strain vs electric field curves and the corresponding electric displacement vs electric field loops. It is also the source of a stress-strain curve with linear elastic behavior at low stress, non-linear switching strain at intermediate stress, and linear elastic behavior at high stress. In this work, ceramic lead lanthanum zirconate titanate (PLZT) is polarized by loading with a strong electric field. The resulting strain and polarization hysteresis loops are recorded. The polarized sample is then loaded with compressive stress parallel to the polarization and the stress vs strain curve is recorded. The experimental results are modeled with a computer simulation of the ceramic microstructure. The polarization and strain for an individual grain are predicted from the imposed electric field and stress through a Preisach hysteresis model. The response of the bulk ceramic to applied loads is predicted by averaging the response of individual grains that are considered to be statistically random in orientation. The observed strain and electric displacement hysteresis loops and the nonlinear stress-strain curve for the polycrystalline ceramic are reproduced by the simulation.
机译:铁电和铁弹性转换会导致铁电陶瓷在受到过度电场或应力的作用下去极化和变形。开关是经典的蝴蝶形应变-电场曲线以及相应的电位移-电场回路的来源。它也是应力-应变曲线的来源,在低应力下具有线性弹性行为,在中等应力下具有非线性转换应变,在高应力下具有线性弹性行为。在这项工作中,陶瓷锆钛酸镧铅(PLZT)通过加载强电场而极化。记录所产生的应变和极化磁滞回线。然后将极化样品加载平行于极化的压缩应力,并记录应力与应变曲线。用陶瓷微结构的计算机模拟对实验结果进行建模。通过Preisach磁滞模型根据施加的电场和应力预测单个晶粒的极化和应变。大块陶瓷对施加的载荷的响应是通过平均认为取向上统计随机的单个晶粒的响应来预测的。通过模拟再现了观察到的应变和电位移磁滞回线以及多晶陶瓷的非线性应力-应变曲线。

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