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首页> 外文期刊>International Journal of Engineering Science >A multiscale model for electro-thermo-elasto-plastic piezoelectric metal matrix multifunctional composites
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A multiscale model for electro-thermo-elasto-plastic piezoelectric metal matrix multifunctional composites

机译:电热弹塑性压电金属基复合材料的多尺度模型

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A multiscale model was developed to analyze the deformation of piezoelectric multifunctional composites with metal matrix. In view of the thermo-inelastic deformation of metal matrix, this model was constructed using an incremental formulation based on the varia-tional-asymptotic method. Although this study adopted the classical plasticity theory to model the metal matrix, it could easily be extended to include viscoplasticity theory as well. The microstructure of composites is assumed to be periodic. Taking advantage of the small size of the microstructure, we formulate a variational statement of energy change of the unit cell through an asymptotic analysis of the functional to predict the effective instantaneous tangential electromechanical matrix of the composites. The present model can recover the local fields using a set of algebraic relations obtained in the process of calculating the effective instantaneous tangential electromechanical matrix. Numerical examples are used to demonstrate the application of the present modeling technique.
机译:建立了多尺度模型,以分析金属基压电多功能复合材料的变形。考虑到金属基体的热非弹性变形,使用基于变分渐近方法的增量公式构造了该模型。尽管本研究采用经典的可塑性理论对金属基体进行建模,但可以很容易地扩展为包括粘塑性理论。假定复合材料的微观结构是周期性的。利用微结构的小尺寸,我们通过对功能进行渐近分析来公式化单位电池能量变化的变化陈述,以预测复合材料的有效瞬时切向机电矩阵。本模型可以利用在计算有效瞬时切向机电矩阵的过程中获得的一组代数关系来恢复局部场。数值示例用于说明本建模技术的应用。

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