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Effect of friction between fiber and matrix on the fracture toughness of the composite interface

机译:纤维与基体之间的摩擦对复合材料界面断裂韧性的影响

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摘要

A method of evaluating the interfacial fracture toughness using a single-fibre composite test is proposed. In contrast with the existing techniques, the method takes into account the phenomenon of friction between the fibre and matrix in the debonding zone. A general mathematical solution of the problem and modelling of the friction phenomenon are presented. Finite-element analysis using a "contact" statement is utilized for numerical evaluation of the stress-strain state. The influence of the coefficient of friction and interfacial debonding length is analysed in detail. It is shown that the friction reduces the calculated value of the elastic strain energy release rate for a given debonding length, relative to that obtained when friction is neglected. The magnitude of the difference depends on the coefficient of friction, the elastic properties of the fibre and matrix, and the characteristics of the debonding mechanism. Experimental data on debonding in a series of glass-epoxy single-fibre composites are analysed using the proposed numerical technique to obtain the effects of fibre surface treatments and fibre strain-to-break on the interfacial fracture toughness. (C) Kluwer Academic Publishers. [References: 27]
机译:提出了一种利用单纤维复合材料测试界面断裂韧性的方法。与现有技术相反,该方法考虑了在剥离区域中纤维与基质之间的摩擦现象。给出了该问题的一般数学解和摩擦现象的建模。使用“接触”语句的有限元分析被用于应力-应变状态的数值评估。详细分析了摩擦系数和界面剥离长度的影响。结果表明,相对于忽略摩擦时的摩擦力,摩擦力在给定的剥离长度下降低了弹性应变能释放率的计算值。差异的大小取决于摩擦系数,纤维和基体的弹性特性以及剥离机理的特性。利用所提出的数值技术分析了一系列玻璃-环氧单纤维复合材料中的脱粘实验数据,以获得纤维表面处理和纤维应变断裂对界面断裂韧性的影响。 (C)克鲁维尔学术出版社。 [参考:27]

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