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Fatigue life prediction of woven composite laminates with initial delamination

机译:初始分层纺织复合层压板的疲劳寿命预测

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摘要

An engineering approach for fatigue life prediction of fibre-reinforced polymer composite materials is highly desirable for industries due to the complexity in damage mechanisms and their interactions. This paper presents a fatigue-driven residual strength model considering the effect of initial delamination size and stress ratio. Static and constant amplitude fatigue tests of woven composite specimens with delamination diameters of 0, 4 and 6 mm were carried out to determine the model parameters. Good agreement with experimental results has been achieved when the modified residual strength model has been applied for fatigue life prediction of the woven composite laminate with an initial delamination diameter of 8 mm under constant amplitude load and block fatigue load. It has been demonstrated that the residual strength degradation-based model can effectively reflect the load sequence effect on fatigue damage and hence provide more accurate fatigue life prediction than the traditional linear damage accumulation models.
机译:由于损伤机制的复杂性及其相互作用,对纤维增强聚合物复合材料的疲劳寿命预测的工程方法非常适合于行业及其相互作用。本文介绍了考虑初始分层尺寸和应力比的效果的疲劳驱动的残余强度模型。进行梭织复合试样的静态和恒定振幅疲劳试验,具有分层直径为0,4和6mm以确定模型参数。当在恒定幅度负载下初始分层直径为8mm的初始分层直径和阻断疲劳负荷时,当改变的残余强度模型应用于初始分层直径的疲劳寿命预测时,已经实现了与实验结果的良好一致性。已经证明,基于剩余的强度降解的模型可以有效地反映对疲劳损伤的负载序列效应,因此提供比传统的线性损伤累积模型更准确的疲劳寿命预测。

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