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Effects of layer shift and yarn path variability on mechanical properties of a twill weave composite

机译:层位移和纱道变化对斜纹编织复合材料力学性能的影响

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摘要

Experimental and numerical analysis of a woven composite were performed in order to assess the effect of yarn path and layer shift variability on properties of the composite. Analysis of the geometry of a 12K carbon fibre 2×2 twill weave at the meso- and macro-scales showed the prevalence of the yarn path variations at the macro-scale over the meso-scale variations. Numerical analysis of yarn path variability showed that it is responsible for a Young’s modulus reduction of 0.5% and CoV of 1% which makes this type of variability in the selected reinforcement almost insignificant for an elastic analysis. Finite element analysis of damage propagation in laminates with layer shift showed good agreement with the experiments. Both numerical analysis and experiments showed that layer shift has a strong effect on the shape of the stress-strain curve. In particular, laminates with no layer shift tend to exhibit a kink in the stress-strain curve which was attributed solely to the layer configuration.
机译:为了评估纱线路径和层位移变异性对复合材料性能的影响,对机织复合材料进行了实验和数值分析。对中尺度和宏观尺度的12K碳纤维2×2斜纹组织的几何形状的分析表明,在宏观尺度上,宏观尺度上纱线路径变化的普遍性。纱线路径变异性的数值分析表明,杨氏模量降低了0.5%,CoV降低了1%,这使得所选增强材料中的这种变异性对于弹性分析几乎没有意义。层移的层压板损伤传播的有限元分析表明与实验吻合良好。数值分析和实验均表明,层移对应力-应变曲线的形状影响很大。特别地,没有层位移的层压材料倾向于在应力-应变曲线中表现出扭折,这仅归因于层构造。

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