基于多重自然组态理论的铁电陶瓷极化开关响应建模

IF 2.2 Q2 ENGINEERING, MULTIDISCIPLINARY
Ruyue Song, Anastasia Muliana
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引用次数: 0

摘要

铁电陶瓷经历极化切换,这在宏观上表现为当受到高压缩应力和/或高振幅电场时的非线性滞后响应。我们通过考虑与电和机械刺激引起的偶极取向变化相关的微观结构变化的演变,对铁电陶瓷的非线性滞后响应进行了建模。我们采用了与多重无应力和无电场状态相关的多重自然构型理论,结合微观结构变化对描述铁电陶瓷非线性机电滞回响应的影响。第一个无应力和无电场状态与材料的原始微观结构有关,其中铁电陶瓷中的偶极子是随机取向的。当铁电陶瓷受到相对较大的刺激时,形成了新的结构,这些刺激使偶极取向对齐。由于每种配置都与特定的微观结构(偶极取向的状态)相关,因此在不同配置下表征的机械和电气特性将是不同的。为了检验该模型,使用了文献中可获得的PZT(锆钛酸铅)陶瓷在电场和应力场下的实验数据。该模型能够描述PZT在机电激励下的滞回响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling polarization switching response of ferroelectric ceramics based on multiple natural configuration theory

Ferroelectric ceramics experience polarization switching, which is macroscopically shown by nonlinear hysteretic responses when subjected to high compressive stresses and/or high amplitude of the electric field. We model the nonlinear hysteretic response of ferroelectric ceramics by considering evolutions of microstructural changes associated with changes in the dipole orientations due to both electrical and mechanical stimuli. We adopt the theory of multiple natural configurations, associated with multiple stress-free and electric-field-free states, in incorporating the effect of microstructural changes on describing the nonlinear electro-mechanical hysteretic response of ferroelectric ceramics. The first stress-free and electric-field-free states are associated with the original microstructure of the materials, in which the dipoles in the ferroelectric ceramics are randomly oriented. The new configurations are formed when the ferroelectric ceramics are subjected to relatively large stimuli, which align the dipole orientations. As each configuration is associated with a specific microstructure (a state of dipole orientations), mechanical and electrical properties characterized at different configurations will be different. To examine the model, experimental data on PZT (lead zirconate titanate) ceramics under electric and stress fields, available in the literature, are used. The model is capable of describing the hysteretic response in PZT under electro-mechanical stimuli.

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来源期刊
Applications in engineering science
Applications in engineering science Mechanical Engineering
CiteScore
3.60
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审稿时长
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