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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A domain evolution model for hysteresis in piezoceramic materials
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A domain evolution model for hysteresis in piezoceramic materials

机译:压电陶瓷材料磁滞的域演化模型

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摘要

In this paper, we use a circular distribution to quantify certain domain properties and model the hysteresis behavior of piezoceramic materials. The model is constructed by bridging the characteristics of microscopic domain distribution into the macroscopic (or bulk) behavior. Contributions, other than those associated with the polarization of domains, to bulk quantities are also counted. A domain orientation distribution function is first selected and the corresponding distribution function parameters are chosen as the internal state variables. For the two-dimensional model, a von Mises-Fisher circular distribution is used. Instead of micromechanical analysis of domain motions that would involve large computation efforts, the delineation of domain evolution is simplified by considering the evolution of the domain orientation distribution, which is determined by the dynamic variations of the internal state variables. We also develop a procedure to identify the material constants introduced in the constitutive equations. The models are used to quantitatively characterize various hysteresis loops observed in piezoceramic materials.
机译:在本文中,我们使用圆形分布来量化某些域属性,并建模压电陶瓷材料的磁滞行为。通过将微观域分布的特征桥接到宏观(或整体)行为中来构建模型。除与域极化相关的贡献外,还计算了对大量贡献的贡献。首先选择域取向分布函数,然后选择相应的分布函数参数作为内部状态变量。对于二维模型,使用von Mises-Fisher圆分布。代替对涉及大量计算工作的域运动进行微机械分析,可以通过考虑域方向分布的演化来简化域演化的描述,该域取向分布的演化由内部状态变量的动态变化确定。我们还开发了一种程序来识别在本构方程中引入的材料常数。该模型用于定量表征在压电陶瓷材料中观察到的各种磁滞回线。

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