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Effective properties of coated fiber composites with piezoelectric and piezomagnetic phases

机译:压电相和压电相的包覆纤维复合材料的有效性能

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摘要

The finite element method is proposed to analyze coated fiber composites with piezoelectric and piezomagnetic phases. The computational homogenization technique is applied for fiber composites with magnetoelectroelastic properties to determine effective material parameters. The evolution of the magnetoelectroelastic fields at the macroscopic level is resolved through the incorporation of the microstructural response. The microstructural analyses are performed on the representative volume element, where essential physical geometrical information about the microstructural components is included. Circular cross section of fibers is considered in numerical analyses. A thin coating layer is considered on the surface of the piezoelectric fiber which is embedded in the piezomagnetic matrix. Influence of the coating layer on the effective material properties is analyzed.
机译:提出了有限元方法来分析具有压电和压电相的涂层纤维复合材料。计算均质化技术应用于具有磁电弹性特性的纤维复合材料,以确定有效的材料参数。磁电弹性场在宏观水平上的演化通过结合微观结构响应得以解决。对代表性的体积元素执行微结构分析,其中包括有关微结构组件的基本物理几何信息。在数值分析中考虑了纤维的圆形横截面。考虑在压电纤维的表面上形成一层薄涂层,该涂层嵌入到压电矩阵中。分析了涂层对有效材料性能的影响。

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