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Grain Orientation Scattering in Nonlinear Constitutive Modeling of Piezoelectric-ferroelectric Materials

机译:压电-铁电材料非线性本构模型中的晶粒取向散射

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摘要

The ability to enhance and to improve the efficiency of micromechanical models for the coupled electromechanical constitutive behavior of piezoelectric materials in the nonlinear regime is investigated. Motivated by the limited strain actuation capabilities of the existing piezoelectric materials and structures, it is recognized that the nonlinear regime has to be explored. However, due to the complex, strongly coupled, and hysteretic behavior of the material, the quantitative prediction of its nonlinear response requires complex and time-consuming algorithms. In this study, the ability to improve the efficiency of the micromechanical algorithm by using a deterministic set of directions as a representative of the scattering of grain's orientation within the piezoelectric polycrystal is investigated. Various types of deterministic grain sets that include an equal area, a spiral, and Fekete grain sets are examined. The constitutive micromechanical model for the piezoelectric material and the algorithms for the generation of the various grain sets are presented and discussed. Numerical results that compare the capabilities of the model that uses the deterministic scattering approach and those that adopt a random scattering, which is commonly used today, are presented and discussed. Emphasis is placed on the ability to predict the complex nonlinear material response and on the computational efficiency. The article closes with a summary and conclusions.
机译:研究了在非线性状态下增强和提高压电材料耦合机电本构行为的微机械模型效率的能力。由于现有压电材料和结构有限的应变驱动能力,人们认识到必须探索非线性机制。然而,由于材料的复杂,强耦合和滞后行为,其非线性响应的定量预测需要复杂且耗时的算法。在这项研究中,研究了通过使用确定的方向集作为压电多晶体中晶粒取向的散射的代表来提高微机械算法效率的能力。研究了各种类型的确定性晶粒集,包括相等的面积,螺旋形和Fekete晶粒集。提出并讨论了压电材料的本构微机械模型以及生成各种晶粒集的算法。给出并讨论了数值结果,这些结果比较了使用确定性散射方法的模型的功能和采用随机散射的模型(当前使用的随机模型)的功能。重点放在预测复杂非线性材料响应的能力和计算效率上。本文以总结和结论作为结尾。

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