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ANALYTICAL SOLUTIONS FOR EFFECTIVE AXIAL MECHANICAL PROPERTIES OF ACTIVE FIBER COMPOSITES

机译:活性纤维复合材料有效轴向力学性能的解析解

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摘要

This work presents analytical solutions for the effective axial mechanical properties of the active fiber composites with different geometries, e.g., circular and rectangular cross-sections, and while the properties of the constituent materials are considered to be generally orthotropic. Analytical exact solutions of the effective longitudinal Young's moduli and major Poisson's ratios are obtained for two different geometries of a 2-phase composite model composed of orthotropic materials. Finite element analyses (FEAs) are also performed to verify the obtained analytical exact solutions. Excellent agreements are achieved between the results obtained from both techniques. Finally, the effective mechanical properties calculated from analytical solutions for the modeled geometrical configurations are compared.
机译:这项工作提出了具有不同几何形状(例如,圆形和矩形横截面)的活性纤维复合材料的有效轴向机械性能的分析解决方案,而构成材料的性能通常被认为是正交各向异性的。对于正交各向异性材料组成的两相复合模型的两种不同几何形状,可以得到有效纵向杨氏模量和主要泊松比的解析精确解。还执行了有限元分析(FEA),以验证所获得的解析精确解。从这两种技术获得的结果之间达成了极好的协议。最后,比较了从解析解为模型化的几何构造计算出的有效机械性能。

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