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Micromechanical Modeling of Switching Effects in Piezoelectric Materials - A Robust Coupled Finite Element Approach

机译:压电材料中开关效应的微力学建模-鲁棒耦合有限元方法

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A micromechanically motivated model for piezoelectric materials has been developed in this work. In particular, the nonlinear behavior of poly-crystalline specimens with tetragonal perovskite-type substructure are studied, and a robust three-dimensional coupled finite element formulation is elaborated. Differently oriented grains are taken into account within the proposed model, whereby representative dipole directions attached to each grain are randomly oriented. Furthermore, an energy reduction criterion applied to individual domains is adopted as a criterion for the initiation of domain switching processes. Based on this, macroscopic bulk response can be predicted by classical volume-averaging techniques. In practice, however, domain switching might occur even below the classical critical energy barrier which mainly stems from so-called intergranular effects. These effects are incorporated into the developed framework via a phenomenologically motivated probabilistic approach by relating the actual energy level to a critical energy level. In order to compare representative coupled finite element examples with experimental data reported in the literature, macroscopically uni-axial and quasi-static loading is applied to the bulk material: first, hysteresis and butterfly curves under purely electrical loading are discussed; secondly, additional mechanical loads in axial and lateral direction are applied to the specimen.
机译:在这项工作中开发了压电材料的微机械模型。特别地,研究了具有四方钙钛矿型子结构的多晶试样的非线性行为,并阐述了鲁棒的三维耦合有限元公式。在提出的模型中考虑了取向不同的晶粒,从而使附着在每个晶粒上的代表性偶极子方向随机取向。此外,采用应用于单个域的能量减​​少标准作为用于域切换过程的发起的标准。基于此,可以通过经典的体积平均技术预测宏观的体积响应。然而,实际上,域切换甚至可能发生在经典的临界能垒之下,而经典的临界能垒主要来自所谓的晶间效应。通过将实际能量水平与临界能量水平相关联,通过现象学动机的概率方法将这些影响合并到已开发的框架中。为了将代表性的有限元耦合实例与文献中报道的实验数据进行比较,将宏观单轴和准静态载荷应用于块状材料:首先,讨论纯电载荷下的磁滞曲线和蝶形曲线;其次,将附加的轴向和横向机械载荷施加到样品上。

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