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An analytical study on cracking directions and damage in thermal fatigue crazing subjected to variable amplitude loadings

机译:变幅载荷下热疲劳裂纹的裂纹方向和损伤的分析研究

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In this paper, the effects of biaxial mean stress, mainly contributed by the weld residual stress, and thermal loading conditions on cracking directions and damage in high cycle thermal fatigue crazing subjected to variable amplitude loadings are investigated by a combined analytical and computational approach. The cracking directions are related to the orientation of the critical plane defined by the maximum damage. Analytical solutions of the critical plane orientation under constant amplitude biaxial tension/compression loadings are first derived and then employed to study the effects of biaxial mean stress on the critical plane orientation. The critical plane orientation appears to strongly depend on the dominant direction defined by the larger maximum stress. The developed analytical solution of the critical plane orientation and the analytical solution of the thermal stress from the literature are employed to study the effects of thermal loading conditions on the critical plane orientation. The critical plane orientation does not seem to significantly depend on the frequency, the amplitude and the mean value of the fluid temperature fluctuations, and the heat transfer film coefficient between the fluid and the pipe wall. The critical plane orientation under variable amplitude loadings is also studied, and an approximate solution is proposed for convenient engineering applications. The critical plane orientations are used to partially explain the observed cracking directions in the high cycle thermal fatigue crazing in the old residual heat removal system of a nuclear power plant. Finally, the effects of biaxial mean stress and thermal loading conditions on the fatigue crack initiation life are discussed.
机译:本文采用分析和计算相结合的方法,研究了双轴平均应力(主要由焊接残余应力和热载荷条件对变幅载荷下高周疲劳疲劳裂纹的开裂方向和损伤的影响)的影响。裂纹的方向与最大破坏所定义的临界平面的方向有关。首先得出在恒定振幅双轴拉伸/压缩载荷下临界平面取向的解析解,然后用于研究双轴平均应力对临界平面取向的影响。临界平面方向似乎在很大程度上取决于较大的最大应力所定义的主导方向。从文献中发展出的临界平面取向的解析解和热应力的解析解被用来研究热载荷条件对临界平面取向的影响。临界平面取向似乎并不明显取决于流体温度波动的频率,幅度和平均值,以及流体与管壁之间的传热膜系数。还研究了在可变振幅载荷下的临界平面取向,并提出了一种近似的解决方案,以方便工程应用。临界平面取向用于部分解释在核电厂的旧余热去除系统中的高循环热疲劳裂纹中观察到的裂纹方向。最后,讨论了双轴平均应力和热载荷条件对疲劳裂纹萌生寿命的影响。

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