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Elastic-plastic fracture mechanics based prediction of crack initiation load in through-wall cracked pipes

机译:基于弹塑性断裂力学的全壁裂管裂纹萌生载荷预测

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In order to evaluate the structural integrity of power plants, it is required to know the load carrying capacity of a piping system, J-integral based elastic-plastic fracture mechanics (EPFM) has become a useful analytical technique for dealing with ductile materials. It is important to see how accurately we can predict the stages of leak-before-break demonstration using EPFM. Current efforts are focussed on verifying previously developed J-estimation schemes for through-wall cracked (TWC) straight pipes with the calculated elastic-plastic J-integral values that are obtained by conducting a rigorous 3D non-linear finite element analysis using advanced fracture analysis code WARP3D. This includes the validation and benchmarking of J-estimation schemes with the present 3D non-linear finite element analysis results and with the experimental results at crack initiation stage. The results corresponding to crack initiation results calculated by estimation schemes are too conservative. Thus, in order to perform J-integral based EPFM analysis more accurately and conveniently, there is a need to develop an efficient estimation scheme that can represent material behaviour closely. The crack initiation load calculated by the present finite element analysis results is shown to provide a more reasonable prediction.
机译:为了评估电厂的结构完整性,需要了解管道系统的承载能力,基于J积分的弹塑性断裂力学(EPFM)已成为处理延性材料的有用分析技术。重要的是要知道我们可以使用EPFM准确预测破裂前泄漏演示的阶段。当前的工作重点是通过计算的弹塑性J积分值来验证先前开发的通孔裂(TWC)直管的J估计方案,该值是通过使用高级断裂分析进行严格的3D非线性有限元分析而获得的代码WARP3D。这包括使用当前3D非线性有限元分析结果以及裂纹萌生阶段的实验结果对J估计方案进行验证和基准测试。与通过估计方案计算的裂纹萌生结果相对应的结果过于保守。因此,为了更准确和方便地执行基于J积分的EPFM分析,需要开发一种可以紧密表示材料行为的有效估算方案。通过目前的有限元分析结果计算出的裂纹萌生载荷显示出了更合理的预测。

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