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Thickness dependence of mode I interlaminar fracture toughness in a carbon fiber thermosetting composite

机译:碳纤维热固性复合材料中I型层间断裂韧度的厚度依赖性

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The relation of the non-singular opening stress component with apparent fracture toughness was investigated for unidirectional carbon-fiber laminates by means of double cantilever beam experiments in which laminate thickness was varied. It was found that a sample configuration with smaller thickness related to a higher apparent fracture toughness measurement. This result was explained by the presence of a negative non-singular opening stress component, which was found to decrease with thickness. The experimental procedure utilized first crack propagation from the initial polytetrafluoroethylene insert to avoid ambiguity of defining crack location due to crack curving, resulting in a wider crack front and fiber bridging. The two dimensional finite element analyses were used to calculate the corresponding singular and non-singular stress components and the energy release rates. Based on the experimental results a two parameter linear elastic fracture mechanics model was calibrated to incorporate the thickness dependence of the apparent fracture toughness. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过改变厚度的双悬臂梁试验研究了单向碳纤维层压板的非奇异张应力分量与表观断裂韧性之间的关系。发现具有较小厚度的样品构造与较高的表观断裂韧性测量有关。负的非奇异打开应力分量的存在解释了这一结果,该分量随厚度的增加而减小。该实验程序利用了最初的聚四氟乙烯插入物产生的第一道裂纹,以避免由于裂纹弯曲而导致确定裂纹位置的模棱两可,从而导致了更宽的裂纹前沿和纤维桥接。二维有限元分析用于计算相应的奇异和非奇异应力分量以及能量释放率。基于实验结果,对两参数线性弹性断裂力学模型进行了校准,以纳入表观断裂韧性的厚度依赖性。 (C)2016 Elsevier Ltd.保留所有权利。

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