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Micromechanical analysis of interfacial debonding in unidirectional fiber-reinforced composites

机译:单向纤维增强复合材料界面剥离的微力学分析

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In this paper the behaviour of unidirectional fiber-reinforced composites with imperfect interfacial bonding is investigated by using the finite element method. The matrix and the fibers are considered homogeneous, isotropic and linearly elastic; an interfacial failure model is implemented by connecting the fibers and the matrix at the finite element nodes by normal and tangential brittle-elastic springs. Numerical analyses are carried out on a unit cell extracted from a composite model characterized by a periodic microstructure. The micromechanical simulations provide the first failure loci (FFL), i.e. the envelopes of the composite average strains corresponding to the initiation of the debonding, and the instantaneous overall moduli of the damaged composite corresponding to several interface damage configurations. The results show that the intersections of the FFL with prescribed planes are defined by curves associated with different interface failure modes. Besides, damage induced by fiber-matrix debonding is strongly anisotropic and dependent on the load history.
机译:本文利用有限元方法研究了界面粘结不完善的单向纤维增强复合材料的行为。基质和纤维被认为是均匀的,各向同性的和线性弹性的。通过使用法向和切向脆性弹性弹簧在有限元节点处连接纤维和基体,可以实现界面破坏模型。对从具有周期性微观结构特征的复合模型中提取的晶胞进行了数值分析。微观力学模拟提供了第一失效位点(FFL),即对应于剥离开始的复合平均应变的包络,以及对应于几种界面损伤构型的受损复合材料的瞬时总模量。结果表明,FFL与指定平面的交点由与不同界面失效模式相关的曲线定义。此外,由纤维基质剥离引起的损伤是强烈各向异性的,并取决于载荷历史。

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