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Constitutive modeling of fiber composites with a soft hyperelastic matrix

机译:具有软超弹性基体的纤维复合材料的本构模型

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This paper presents an experimental and numerical study of unidirectional carbon fiber composites with a silicone matrix, loaded transversally to the fibers. The experiments show nonlinear behavior with significant strain softening under cyclic loading. The numerical study uses a plane-strain finite element continuum model of the composite material in which the fiber distribution is based on experimental observations and cohesive elements allow debonding to take place at the fiber/matrix interfaces. It is found that accurate estimates of the initial tangent stiffness measured in the experiments can be obtained without allowing for debonding, but this feature has to be included to capture the non-linear and strain-softening behavior.
机译:本文介绍了横向和碳纤维负载的有机硅单向碳纤维复合材料的实验和数值研究。实验表明,在循环载荷下,非线性行为具有明显的应变软化。数值研究使用了复合材料的平面应变有限元连续体模型,其中纤维分布基于实验观察结果,并且内聚元素允许在纤维/基体界面处发生脱粘。发现可以在不剥离的情况下获得对在实验中测量的初始切线刚度的准确估计,但是必须包含此功能以捕获非线性和应变软化行为。

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