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Studies of fiber-matrix debonding

机译:纤维基质剥离的研究

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In this paper, the debonding of a single fiber-matrix system of carbon fiber reinforced composite (12FRP) AS4/Epson 828 material is studied using Cohesive Zone Model (CZM). The effect of parameters namely, maximum tangential contact stress, tangential slip distance and artificial damping coefficient on the debonding length at the interface of the fiber-matrix is analyzed. Contact elements used in the CZM are coupled based on a bilinear stress-strain curve. Load is applied on the matrix, tangential to the interface. Hence, debonding is observed primarily in Mode II. Wide range of values are considered to study the inter-dependency of the parameters and its effect on debonding length. Out of the three parameters mentioned, artificial damping coefficient and tangential slip distance significantly affect debonding length. A thorough investigation is recommended for case wise interface debonding analysis, to estimate the optimal parametric values while using CZM.
机译:本文采用内聚力区模型(CZM)研究了碳纤维增强复合材料(12FRP)AS4 / Epson 828材料的单纤维基体的脱胶。分析了最大切向接触应力,切向滑移距离和人工阻尼系数等参数对纤维-基体界面处剥离长度的影响。 CZM中使用的接触元件基于双线性应力-应变曲线进行耦合。载荷施加在与切线相切的矩阵上。因此,剥离主要在模式II中观察到。考虑广泛的数值来研究参数的相互依赖性及其对脱粘长度的影响。在上述三个参数中,人工阻尼系数和切向滑动距离会显着影响脱胶长度。建议对案例进行界面去键合分析进行彻底研究,以在使用CZM时估算最佳参数值。

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