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首页> 外文期刊>Journal of intelligent material systems and structures >A Multi-scale Formulation for Predicting Non-linear Thermo-electro-mechanical Response in Heterogeneous Bodies
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A Multi-scale Formulation for Predicting Non-linear Thermo-electro-mechanical Response in Heterogeneous Bodies

机译:预测异质体内非线性热电机械响应的多尺度公式

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摘要

This study presents a multi-scale formulation for analyzing coupled heat conduction and thermo-electro-mechanical deformation in heterogeneous bodies, namely active composites. The studied active composite comprises ferroelectric inclusions dispersed in polymer matrix. The multi-scale framework is derived based on an integrated simplified micro-mechanical and finite element model. A non-linear thermo-electro-elastic constitutive model of materials undergoing large electric driving fields and small strains is used for the polarized ferroelectric inclusions. An integration algorithm with predictor and corrector schemes is developed to obtain approximate solutions of field variables: temperature, displacement, strain, stress, electric field, and electric displacement. The multi-scale model is capable of determining field variables at multiple length scales which is important when non-linear behaviors in the constituents of heterogeneous bodies are considered. We examine the effect of mismatches in the properties of the constituents in an active composite on the overall field coupling responses in the composite. We also compare the field coupling responses in an active composite to those of a homogeneous body, i.e., lead zirconate titanate (PZT). We finally present a simulation of controlling deformation in a smart cantilever beam using the multi-scale framework.
机译:这项研究提出了一种多尺度公式,用于分析异质体(即活性复合材料)中的热传导和热电-机械变形耦合。研究的活性复合材料包含分散在聚合物基质中的铁电夹杂物。基于集成的简化的微机械和有限元模型,得出了多尺度框架。极化大铁电夹杂物采用了经历大电驱动场和小应变的材料的非线性热电弹性本构模型。开发了具有预测器和校正器方案的集成算法,以获取场变量的近似解:温度,位移,应变,应力,电场和电位移。多尺度模型能够确定多个长度尺度的场变量,这在考虑异质体组成中的非线性行为时很重要。我们研究了活性复合材料中成分的特性不匹配对复合材料中整体场耦合响应的影响。我们还比较了活性复合材料与均质体即锆钛酸铅(PZT)的场耦合响应。我们最终提出了使用多尺度框架控制智能悬臂梁变形的模拟。

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