首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Numerical study of mode I fracture toughness of carbon-fibre-reinforced plastic under an impact load
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Numerical study of mode I fracture toughness of carbon-fibre-reinforced plastic under an impact load

机译:冲击载荷作用下碳纤维增强塑料I型断裂韧性的数值研究

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摘要

The main objective of this work is, by using cohesive zone modelling, to compute the fracture toughness behaviour in mode I of unidirectional carbon-fibre-reinforced plastic subjected to an impact load at 4.7 m/s. To perform this task, double-cantilever beam specimens were simulated, with its opening displacement and crack propagation being assessed, as well as the evolution of strain rate through the test. Therefore, by plotting the crack propagation, it was possible to calculate the fracture toughness in mode I (G(IC)). A comparison of the numerical results with experimental tests previously performed by using a drop weight falling-wedge impact test equipment was made, allowing to infer that the numerical approach, based on a triangular cohesive zone modelling, is capable to predict the behaviour of such specimens under impact, accurately obtain G(IC), and to determine the value of strain rate achieved through the test.
机译:这项工作的主要目的是,通过使用内聚区模型,计算在4.7 m / s的冲击载荷下单向碳纤维增强塑料在模式I下的断裂韧性行为。为了执行此任务,模拟了双悬臂梁标本,评估了其开孔位移和裂纹扩展以及通过测试的应变率演变。因此,通过绘制裂纹扩展图,可以计算出模式I(G(IC))下的断裂韧性。将数值结果与先前通过使用落锤坠落冲击试验设备进行的实验测试进行了比较,从而可以推断,基于三角内聚区建模的数值方法能够预测此类试样的行为在冲击下,准确获得G(IC),并确定通过测试获得的应变率值。

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