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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >An experimental and numerical study of the influence of local effects on the application of the fibre push-in test
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An experimental and numerical study of the influence of local effects on the application of the fibre push-in test

机译:局部效应对光纤推入试验应用影响的实验和数值研究

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摘要

Several methods, such as pull-out, microbond and push-in/push-out tests, have been developed to test interfacial adhesion in composite materials. Some of them can only be applied to single-fibre matrix composites, like the microbond test, and others are difficult to perform on brittle fibres due to premature fracture of the fibre. Push-in tests, consisting of pushing the fibre with a micro- or nanoindenter on a bulk specimen, constitute a powerful technique that can be applied directly to composite laminates. However, the interfacial adhesion values obtained from different tests (microbond, push-in) often differ and even the results from one type of test are subjected to a large scatter. This might be due to the fact that the existing analytical solutions that are typically used to interpret the experimental data take into account the constraining effect of the surrounding fibres on a simplified manner. To study interfacial adhesion and the effect of the constraint of the neighbouring fibres, a micromechanical model of the push-in test was developed, coupled with experimental adhesion testing in a glass fibre-reinforced epoxy matrix composite. The model takes into account the interfacial fracture process by means of interface cohesive elements at the fibre-matrix interface and focusses on the study of the constraining effects due to the local configuration of the surrounding fibres.
机译:已经开发了几种方法,例如拉出,微粘结和推入/推出测试来测试复合材料中的界面粘合性。它们中的一些只能应用于单纤维基复合材料,例如微粘合测试,而其他一些则由于纤维的过早断裂而难以在脆性纤维上执行。推入测试(包括用微型或纳米压头将纤维推入散装样品)构成了一种强大的技术,可以直接应用于复合材料层压板。但是,从不同测试(微粘结,推入式)获得的界面附着力值通常会有所不同,甚至从一种测试类型得到的结果也会出现较大的分散。这可能是由于以下事实:通常用于解释实验数据的现有分析解决方案以简化的方式考虑了周围纤维的约束作用。为了研究界面粘合和相邻纤维的约束作用,建立了推入测试的微机械模型,并在玻璃纤维增​​强的环氧基质复合材料中进行了实验粘合测试。该模型考虑了通过纤维-基体界面处的界面粘合元件的界面断裂过程,并着重研究了由于周围纤维的局部构型而产生的约束效应。

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