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The critical damage state controlling the tension-tension fatigue life of unidirectional fibre composites

机译:控制单向纤维复合材料拉伸-拉伸疲劳寿命的临界损伤状态

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摘要

A fracture mechanics model is proposed for the prediction of the critical damage state corresponding to tension tension fatigue failure of unidirectional fibre composites. The critical damage state is characterized by the development of longitudinal splitting cracks, enabling isolated damage zones with broken fibres to link up. The critical damage state can be expressed in terms of the size of damage zones with broken fibres. The critical damage zone size depends on the maximum applied cyclic stress level, the geometry of the splitting pattern and on the Mode II fracture energy of the composite. The model was used for predicting the critical damage size of a glass fibre composites subjected to cyclic loading. In a study reported in the literature, the damage zone size was determined experimentally by X-ray tomography just prior to fatigue failure. A good agreement was found between the predicted and reported damage zone sizes. Moreover, the reported failure involved longitudinal splitting in accordance with the model.
机译:提出了一种断裂力学模型,用于预测与单向纤维复合材料的拉伸,拉伸,疲劳破坏相对应的临界损伤状态。临界破坏状态的特征在于纵向裂隙的发展,使孤立的破坏区域与断裂的纤维连接起来。临界损坏状态可以用纤维断裂的损坏区域的大小表示。临界破坏区的大小取决于所施加的最大循环应力水平,分裂模式的几何形状以及复合材料的II型断裂能。该模型用于预测承受循环载荷的玻璃纤维复合材料的临界破坏尺寸。在文献报道的一项研究中,损伤区的大小是在疲劳失效之前通过X射线断层摄影术通过实验确定的。在预测的和报告的损坏区域大小之间找到了很好的一致性。此外,报告的失效涉及根据模型的纵向分裂。

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