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Simulation for Fatigue Crack Propagation Behavior Based on Low Cycle Fatigue Critical Damage

机译:基于低循环疲劳临界损伤的疲劳裂纹传播行为模拟

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Based on low cycle fatigue critical damage, a numerical procedure for predicting stable fatigue crack propagation behavior of materials and structures was developed, which was named as LFF (LCF: Low Cycle Fatigue + FCP: Fatigue Crack Propagation + FEA: Finite Element Analysis) in this work. In the LFF method, stress and strain amplitude of nodes located at the plastic zone in the crack growing direction and fatigue damage of these nodes were firstly computed from a finite element code ANSYS. Then, by assuming a discontinuous step of propagation in the process of fatigue crack propagation, the stable fatigue crack propagation behavior of materials and structures could be estimated. Experiments on low cycle fatigue and fatigue crack propagation for Cr2Ni2MoV, TA12 and TC4 alloys were employed to certificate the applicability and validity of the LFF method. The results show that the LFF method is suitable for the estimation of stable fatigue crack propagation of a CT specimen with a straight crack under mode I loading and with a slant crack under mixed mode I and II loading.
机译:基于低循环疲劳临界损伤,开发了一种预测材料和结构稳定疲劳裂纹膨胀行为的数值过程,被命名为LFF(LCF:低循环疲劳+ FCP:疲劳裂纹传播+ FEA:有限元分析)这项工作。在LFF方法中,首先从有限元代码ANSYS首先计算位于裂纹生长方向上的塑料区的节点的应力和应变幅度和这些节点的疲劳损坏。然后,通过假设在疲劳裂纹传播过程中的不连续的传播步骤,可以估计材料和结构的稳定疲劳裂纹传播行为。用于CR2NI2MoV,TA12和TC4合金的低循环疲劳和疲劳裂纹繁殖的实验,用于证明LFF方法的适用性和有效性。结果表明,LFF方法适用于估计CT样品的稳定疲劳裂纹裂纹,在MODE I载荷下,在混合模式I和II负载下具有倾斜裂缝。

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