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A numerical approach for predicting the failure locus of fiber reinforced composites under combined transverse compression and axial tension

机译:组合横向压缩和轴向张力下纤维增强复合材料故障轨迹的数值方法

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摘要

A computational model based on the finite element method is presented for the estimation of strength of a fiber-reinforced lamina subjected to a combination of the transverse compression and axial tension. A complex damage mechanism including fiber breakage, fiber/matrix debonding and matrix plastic deformation is reproduced in the proposed model by using appropriate constitutive equations. The numerical simulation of mechanical response of the unidirectional lamina under biaxial loading is used to obtained the failure locus. Subsequently, the model is verified against an analytical solution and experimental data. It was found that the numerical calculations agree better with experimental results than analytical predictions.
机译:提出了一种基于有限元方法的计算模型,用于估计横向压缩和轴向张力组合的纤维增强薄层的强度。 通过使用适当的组成型方程,在所提出的模型中再现包括纤维破损,光纤/矩阵剥离和基质塑性变形的复杂损伤机制。 双轴载荷下单向薄膜机械响应的数值模拟用于获得失效轨迹。 随后,验证模型针对分析解决方案和实验数据。 发现数值计算比分析预测的实验结果更好。

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