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Numerical investigation of fiber random distribution on the mechanical properties of yarn in-plain woven carbon fiber-reinforced composite based on a new perturbation algorithm

机译:基于新型扰动算法的纱线纱线机械性能对纤维随机分布的数值研究

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摘要

Interior fibers in yarns of plain woven carbon fiber-reinforced composite are distributed randomly, which further influences the mechanical properties of yarns. To explore the stochastic nature of fibers' distribution in yarn and its effect on the properties of yarn, this study proposes a new perturbation algorithm named Sequential Random Perturbation algorithm to reconstruct the microstructure of randomly distributed fibers, based on which representative volume element micromechanical models consisting of three phases to accurately predict the mechanical properties of yarn are established. The algorithm is based on successive smart perturbations of fibers to gain microstructures of arbitrary volume fraction, and statistical study shows that the algorithm is in good agreement with experimental results. Finally, representative volume element models are simulated to predict the whole mechanical properties of composite yarns to reflect the failure mechanisms and microstructure-property relations. The randomness of fiber distribution has some degree of influence on mechanical properties of yarn, especially strength responses. The failures under axial tension and compression are dominated by fiber breakage, while under transverse and shear loading conditions, the failures are mostly decided by interface debonding and matrix damage.
机译:纱线纱线中的内纤维随机分布,进一步影响纱线的机械性能。探讨纱线纤维分布的随机性质及其对纱线性质的影响,本研究提出了一种名为顺序随机扰动算法的新的扰动算法来重建随机分布式纤维的微观结构,基于组成的代表体积元件微机械模型三相以准确预测纱线的机械性能。该算法基于纤维的连续智能扰动,以增益任意体积分数的微观结构,统计研究表明该算法与实验结果吻合良好。最后,模拟代表性体积元件模型以预测复合纱线的整个机械性能,以反映故障机制和微观结构性关系。纤维分布的随机性对纱线的机械性能有一定程度的影响,尤其是强度反应。轴向张力和压缩下的故障是通过纤维破损的主导,而在横向和剪切装载条件下,故障主要由界面剥离和基质损坏决定。

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