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首页> 外文期刊>International Journal of Fracture >Interface fracture toughness of a multi-directional woven composite
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Interface fracture toughness of a multi-directional woven composite

机译:多向机织复合材料的界面断裂韧性

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摘要

The aim of this investigation is to measure the interface fracture toughness of a woven composite. For this purpose, double cantilever beam (DCB) specimens are tested to measure the load as the delamination grows. The specimen is composed of 15 layers of a carbon-epoxy, balanced weave with alternate layers containing fibers in the 0/90 directions and the +45/- 45 directions. A thin piece of Teflon is placed between two layers of differing directions. The specimens are analyzed by means of the finite element method and an interaction energy or M-integral to determine the stress intensity factors, interface energy release rate and phase angles. The first term of the asymptotic solution for the stress and displacement fields obtained by means of the Stroh and Lekhnitskii formalisms is used to define auxiliary solutions for the M-integral. The critical interface energy release rate is found and exhibits a slowly increasing resistance curve. Comparisons are made to a simple expression from the literature.
机译:该研究的目的是测量编织复合材料的界面断裂韧性。为此,对双悬臂梁(DCB)样品进行了测试,以测量随着分层增加而产生的载荷。标本由15层碳-环氧平衡编织层组成,交替层包含在0/90方向和+ 45 /-45方向上的纤维。一块特氟龙薄片放在两个不同方向的层之间。通过有限元方法和相互作用能或M积分对样品进行分析,以确定应力强度因子,界面能释放率和相角。通过Stroh和Lekhnitskii形式主义获得的应力和位移场的渐近解的第一项用于定义M积分的辅助解。发现了临界界面能量释放速率,并且呈现出缓慢增加的电阻曲线。比较文献中的一个简单表达。

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