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On the Modelling of Rate-Dependent Domain Switching in Piezoelectric Materials under Superimposed Stresses

机译:叠加应力下压电材料中速率相关域转换的建模

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摘要

To study rate-dependent properties of piezoelectric materials a micro-mechanically motivated model is applied in this work. The developed framework is embedded into a coupled three-dimensional finite element setting, whereby each element is assumed to represent one grain and, moreover, possesses a random initialisation of the underlying polarisation direction. Furthermore, an energy-based criterion is used for the initiation of the onset of domain switching and the subsequent propagation of domain wall motion during the switching process is modelled via a linear kinetics theory. The interaction between individual grains is thereby incorporated by means of a probabilistic approach - a purely phenomeno-logically motivated concept. To study the overall bulk ceramics behaviour, straightforward volume-averaging techniques are applied. In addition, rate-dependent properties under cyclic electrical loading combined with mechanical loads at various frequencies are studied, whereby use of a so-called volume fraction concept is made. The proposed model provides further insights into rate-dependent behaviour as experimentally observed and reported in the literature.
机译:为了研究压电材料的速率相关性能,在这项工作中应用了微机械模型。所开发的框架被嵌入到耦合的三维有限元设置中,由此假定每个元素都代表一个晶粒,此外,它还具有对底层极化方向的随机初始化。此外,基于能量的标准用于域切换的开始,并且通过线性动力学理论对切换过程期间域壁运动的后续传播进行建模。因此,通过概率方法(纯粹的现象学动机概念)将各个晶粒之间的相互作用结合在一起。为了研究整体陶瓷的性能,应用了简单的体积平均技术。此外,还研究了循环电负载与机械负载在各种频率下的速率相关特性,从而采用了所谓的体积分数概念。所提出的模型提供了对速率依赖性行为的进一步见解,如实验观察和文献报道。

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