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Mode I Ductile Crack Growth of 1TCT Specimen Under Large Cyclic Loading: Part Ⅲ

机译:1TCT试样在大循环载荷下的I型延性裂纹扩展:第三部分

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Fitness for service rules and a calculation method for ductile crack growth under large scale plastic cyclic loading have not been established even for Mode I. In a paper presented at the PVP2018 conference the authors presented methods to establish how to determine the parameters of the combined hardening plasticity rule and applied it to simulate the ductile crack growth behavior of 1TCT specimens of the different load levels. Also, ΔJ calculations using the reference stress method, and a ΔJ-basis fatigue crack growth rate derived from that on ΔK-basis according to JSME rules for FFS were applied to estimate the crack growth under cyclic loading in excess of yield. Since in the 2018 paper identified some gaps were found between experiments and the predicted crack growth behavior, several equations of the reference stress method are evaluated in the present paper. Additionally, the prediction procedure using the ΔJ calculation by the reference stress method and the da/dN-ΔJ curve based on the JSME rules for FFS are applied to pipe fracture tests under cyclic loading. Their applicability is discussed for the case of an example piping system.
机译:即使在模式I下,也尚未建立适用于服务规则的适用性以及在大规模塑料循环载荷下延性裂纹扩展的计算方法。在PVP2018大会上发表的一篇论文中,作者提出了确定如何确定组合硬化参数的方法可塑性规则,并将其应用于模拟不同载荷水平下1TCT试样的延性裂纹扩展行为。另外,使用参考应力法计算ΔJ,并根据FSME的JSME规则,使用基于ΔK基的疲劳裂纹扩展率得出ΔJ基疲劳裂纹扩展率,以估算在循环荷载作用下超过屈服的裂纹扩展。由于在2018年的论文中发现了在实验和预测的裂纹扩展行为之间存在的差距,因此本文对参考应力方法的几个方程进行了评估。此外,将基于参考应力法的ΔJ计算和基于FSME的JSME规则的da /dN-ΔJ曲线的预测程序应用于循环载荷下的管道断裂试验。对于示例管道系统的情况,讨论了它们的适用性。

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