铁电陶瓷在机电加载下的非静电应变

IF 3.1 3区 物理与天体物理 Q2 PHYSICS, APPLIED
Chaimae Babori, Mahmoud Barati, Valentin Segouin, Romain Corcolle and Laurent Daniel
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引用次数: 0

摘要

本研究调查了 PZT 陶瓷中的失稳应变。失稳曲线与畴极化结构中的稳定平衡状态有关,排除了与畴壁钉销等机制有关的耗散效应。静态测量代表了一种理想情况,即材料不会因耗散过程而造成能量损失,重点是畴结构的稳定和可逆方面。文章介绍了测量机电加载下的变形所采用的不同方法,最终选择了数字图像相关(DIC)技术,该技术因其能够捕捉横向和纵向应变的详细信息而得到认可。文章随后介绍了为获得不同压缩载荷水平下的非静力应变和非静力极化而开发的程序。随后介绍的横向和纵向应变分析结果为了解材料的可逆和不可逆行为提供了宝贵的见解。这些结果可作为基于分离可逆和不可逆贡献的热力学建模方法的基础,或作为对描述非稳态行为的现有模型的验证。压应力会影响滞回曲线和失稳曲线的形状。滞回曲线代表了畴结构中的稳定平衡。压应力会影响畴壁的钉扎,从而降低应变。这些观点证明,研究压应力对铁电的滞回行为的影响是有意义的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anhysteretic strains in ferroelectric ceramics under electromechanical loading
This study investigates anhysteretic strains in PZT ceramics. The anhysteretic curves are associated with a stable balanced state of polarization in the domain structure, excluding dissipative effects related to mechanisms such as domain wall pinning. Anhysteretic measurements are representative of an -ideal- scenario in which the material would undergo no energy loss due to dissipative processes, focusing on the stable and reversible aspects of the domain configuration. The different methodologies employed to measure deformations under electromechanical loading are presented, leading to the introduction of digital image correlation (DIC) as the chosen technique, recognized for its ability to capture detailed information on transverse and longitudinal strain. The article then describes a procedure developed to obtain anhysteretic strain and anhysteretic polarisation for different levels of compressive loadings. The subsequent presentation of the results of the transverse and longitudinal strain analyses provides valuable insights into the reversible and irreversible behavior of the material. They can be used as a basis for the thermodynamical modelling approaches grounded on separating reversible and irreversible contributions or as a validation of existing models describing anhysteretic behavior. The compressive stress affects both the shape of hysteretic and anhysteretic curves. The anhysteretic curve represents a stable equilibrium in the domain structure. Compressive stress reduces strain by affecting the pinning of domain walls. These points justify the interest in studying the effect of compressive stress on the anhysteretic behavior of ferroelectrics.
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来源期刊
Journal of Physics D: Applied Physics
Journal of Physics D: Applied Physics 物理-物理:应用
CiteScore
6.80
自引率
8.80%
发文量
835
审稿时长
2.1 months
期刊介绍: This journal is concerned with all aspects of applied physics research, from biophysics, magnetism, plasmas and semiconductors to the structure and properties of matter.
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