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Computational mixed mode failure analysis under fatigue loadings with constant amplitude and overload

机译:恒压和过载疲劳负载下的计算混合模式故障分析

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摘要

The integrity of engineering structures can be often compromised under cyclic loading due to the propagation of the pre-existing cracks. Therefore, computationally feasible fatigue crack growth models are essential for the residual strength analysis. In the present paper, a new fatigue design model is developed for the failure assessment of mixed-mode crack situations subjected to cyclic loading with either a constant amplitude or overload. A fracture mechanics-based methodology takes into account Kujawski's crack growth law, Wheeler's retardation model and the maximum principal stress criterion in order to estimate the residual life and crack path. Furthermore, the experimental investigation of two cracks emanating from a hole subjected to mixed mode loading is performed. Then, such a crack problem is numerically simulated applying the finite element method. The predictive capacity and accuracy of the proposed fatigue model are assessed by means of the literature-based experimental and calculated crack growth data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于预先存在的裂缝的传播,工程结构的完整性通常在循环负载下损害。因此,计算可行的疲劳裂纹增长模型对于残余强度分析至关重要。在本文中,开发了一种新的疲劳设计模型,用于对循环加载的混合模式裂纹情况的失效评估,其具有恒定幅度或过载。基于骨折力学的方法考虑了Kujawski的裂缝增长法,惠勒的延迟模型和最大主应力标准,以估计残留的生命和裂缝路径。此外,进行从经受混合模式载荷的孔发出的两个裂缝的实验研究。然后,这种裂缝问题在数值上模拟应用有限元方法。通过基于文献的实验性和计算的裂缝生长数据评估所提出的疲劳模型的预测能力和准确性。 (c)2016 Elsevier Ltd.保留所有权利。

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