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Effective use of transient vibration damping results for non-destructive measurements of fibre-matrix adhesion of fibre-reinforced flax and carbon composites

机译:有效地利用瞬态振动阻尼结果对纤维增强的亚麻和碳复合材料的纤维基质粘合力进行无损测量

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Fibre-matrix adhesion affects fibre-reinforced composites' mechanical properties, a process which can be improved by applying appropriate sizing on the fibre. Transverse bending tests and Scanning Electron Microscopy (SEM) can help quantify this effect This paper investigates if modal damping measurements are a reliable alternative for quantifying fibre-matrix adhesion. When a composite sample is vibrating, part of the dissipated energy is due to the internal friction. More internal friction and slipping at the fibre-matrix interface is expected with a weaker fibre-matrix bond, hence increasing the amount of dissipated energy, which in turn is proportional to the modal damping value. This paper researches two different cases to validate this hypothesis. In the first case, we will use two composite samples of flax fibre, one with and one without sizing. In the second case, we will compare flax and carbon fibre laminates. If the only variable is fibre sizing, better adhesion is related to significantly lower damping and higher resonance frequencies. If composite laminates with different fibre and matrix type are compared, lower adhesion is not necessarily related to increased damping and lower resonance frequencies. However, when combining the damping result with SEM microscopy, it is possible to assess the relative contribution to the internal energy dissipation of the fibre, the matrix and the fibre-matrix interface individually. (C) 2016 Elsevier Ltd. All rights reserved.
机译:纤维基体的粘合力会影响纤维增强复合材料的机械性能,可通过在纤维上施加适当的上浆剂来改善这一过程。横向弯曲测试和扫描电子显微镜(SEM)可以帮助量化这种影响。本文研究了模态阻尼测量是否是量化纤维基质粘附的可靠替代方法。当复合样品振动时,部分耗散的能量归因于内部摩擦。纤维与基质之间的键合较弱时,会在纤维与基质之间的界面处产生更多的内部摩擦和滑移,从而增加了耗散的能量,而能量的耗散又与模态阻尼值成正比。本文研究了两种不同的情况以验证这一假设。在第一种情况下,我们将使用两个亚麻纤维的复合样本,一个带有上浆,一个没有上浆。在第二种情况下,我们将比较亚麻和碳纤维层压板。如果唯一的变量是纤维上浆,则更好的附着力与更低的阻尼和更高的共振频率有关。如果比较具有不同纤维和基质类型的复合层压板,则较低的粘合性不一定与增加的阻尼和较低的共振频率有关。但是,将阻尼结果与SEM显微镜结合使用时,可以分别评估对纤维,基质和纤维-基质界面内部能量耗散的相对贡献。 (C)2016 Elsevier Ltd.保留所有权利。

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