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Weld Residual Stress in Large Diameter Nuclear Nozzles

机译:大直径核喷嘴的焊接残余应力

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Weld residual stresses in nuclear power plant can lead to cracking concerns caused by stress corrosion. These are large diameter thick wall pipe and nozzles. Many factors can lead to the development of the weld residual stresses and the distributions of the stress through the wall thickness can vary markedly. Hence, understanding the residual stress distribution is important to evaluate the reliability of pipe and nozzle joints with welds. This paper represents an examination of the weld residual stress distributions which occur in various different size nozzles. The detailed weld residual stress predictions for these nozzles are summarized. Many such weld residual stress solutions have been developed by the authors in the last five years. These distributions will be categorized and organized in this paper and general trends for the causes of the distributions will be established. The residual stress field can therefore feed into a crack growth analysis. The solutions are made using several different constitutive models such as kinematic hardening, isotropic hardening, and mixed hardening model. Necessary fabrication procedures such as repair, overlay and post weld heat treatment are also considered. Some general discussions and comments will conclude the paper.
机译:核电站中的焊接残余应力可能导致应力腐蚀引起的开裂问题。这些是大直径的厚壁管和喷嘴。许多因素会导致焊接残余应力的发展,并且应力在壁厚范围内的分布可能会发生明显变化。因此,了解残余应力分布对于评估带有焊缝的管道和喷嘴接头的可靠性很重要。本文介绍了在各种不同尺寸的喷嘴中出现的焊接残余应力分布的研究。总结了这些喷嘴的详细焊接残余应力预测。作者在最近五年中开发了许多这样的焊接残余应力解决方案。本文将对这些分布进行分类和组织,并将确定导致分布的一般趋势。因此,残余应力场可用于裂纹扩展分析。使用几种不同的本构模型(例如运动硬化,各向同性硬化和混合硬化模型)来制作解决方案。还考虑了必要的制造程序,例如维修,堆焊和焊后热处理。一些一般性的讨论和评论将结束本文。

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