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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Constitutive laws of composite materials via multiaxial testing and numerical optimization
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Constitutive laws of composite materials via multiaxial testing and numerical optimization

机译:复合材料本构关系的多轴试验与数值优化

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摘要

A multiaxial loading on a laminate, combined with numerical optimization is utilized to determine the five elastic constants for a transversely isotropic composite material in this study. A special in-plane loader, capable of any combination of in-plane displacements plus a rotation is utilized for the testing portion. A corresponding finite element analysis model is created and numerical optimization is utilized to obtain the optimum engineering elastic constants. By utilizing only one test specimen geometry, the resources for determining the constitutive properties can be significantly reduced in terms of time and money, and more precise properties over a wider loading range are gained with this procedure.
机译:在这项研究中,利用层压板上的多轴载荷结合数值优化来确定横向各向同性复合材料的五个弹性常数。测试部分使用了一种特殊的平面装载机,该装载机可以将平面位移加旋转任意组合。建立了相应的有限元分析模型,并通过数值优化获得了最佳的工程弹性常数。通过仅使用一种试样几何形状,可以在时间和金钱上显着减少用于确定本构特性的资源,并且通过此过程可以获得更宽负载范围内的更精确特性。

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