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Experimental and numerical analysis of in-plane and out-of-plane crack tip constraint characterization by secondary fracture parameters

机译:二次断裂参数表征面内和面外裂纹尖端约束的实验和数值分析

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摘要

In this study, several two-parameter-concepts are analyzed experimentally and numerically with respect to their capability of characterizing in-plane and out-of-plane crack tip constraint effects. Different approaches utilizing the second term T_(stress) of the linear-elastic crack tip stress field, a higher term A_2 of the power-law hardening crack tip stress field, a hydrostatic correction term Q for a reference stress field or the local triaxiality parameter h are compared. Experimental results for a pressure vessel steel 22Ni-MoCr3-7 are investigated by means of the different approaches regarding their capability of constraint characterization for enhanced transferability. Theoretical aspects are investigated in a modified boundary layer analysis and in three-dimensional nonlinear elastic-plastic finite element analyses of the specimens. It is found that, with respect to their capability of quantifying combined in-plane and out-of-plane constraint effects, the investigated concepts differ significantly.
机译:在这项研究中,就表征平面内和平面外裂纹尖端约束效应的能力,通过实验和数值分析了几个两个参数的概念。利用线弹性裂纹尖端应力场的第二项T_(应力),幂律硬化裂纹尖端应力场的较高项A_2,参考应力场的静水力校正项Q或局部三轴性参数的不同方法h被比较。借助不同的方法,对压力容器钢22Ni-MoCr3-7的实验结果进行了研究,考察了它们对增强传输性的约束特性。在改进的边界层分析和标本的三维非线性弹塑性有限元分析中研究了理论方面。发现,就其量化组合的平面内和平面外约束效果的能力而言,所研究的概念显着不同。

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