首页> 外文期刊>International Journal of Pressure Vessels and Piping >Predictions of elastic - plastic crack driving force and redistribution under combined primary and secondary stresses - Part 1: Analytical investigation
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Predictions of elastic - plastic crack driving force and redistribution under combined primary and secondary stresses - Part 1: Analytical investigation

机译:初级和次级组合应力作用下弹塑性裂纹驱动力和再分布的预测第1部分:分析研究

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Many engineering components, particularly those containing weldments, may enter service with or develop small crack-like defects. In non-stress-relieved welds, or under thermal stresses, such defects will experience both primary and secondary stresses combined. This paper describes a new function, g, that has been introduced to detail the plasticity interaction under combined loading within structural integrity assessment methods. This function has been based on the Option 2 failure assessment curve in the R6 approach to structural integrity assessment and has been determined from finite element analyses of an externally cracked cylinder under combined primary and secondary loadings. The g function method has been used in the assessment of a series of other cracked geometries subject to loadings which include secondary stresses arising from both thermal gradients and weld residual stresses. The results presented show that the g approach can successfully be extended to the assessment of these other geometries and loading combinations and provides reasonably accurate and less conservative assessments than existing methods presented in R6. A second paper, "Part 2: Experimental Application", compares the application of the g approach with data from experiments performed over a range of plasticity development.
机译:许多工程部件,尤其是包含焊件的工程部件,可能会因出现类似裂纹的细小缺陷而投入使用。在不消除应力的焊缝中或在热应力下,此类缺陷会同时承受一次和二次应力。本文介绍了一个新函数g,它已被引入以详细说明结构完整性评估方法中组合荷载作用下的可塑性相互作用。该功能基于R6方法中结构2评估中的选项2失效评估曲线,并已通过在一次和二次载荷组合下对外部裂纹圆柱的有限元分析确定。 g函数方法已用于评估其他一系列受载荷影响的开裂几何形状,这些载荷包括由热梯度和焊接残余应力引起的二次应力。提出的结果表明,g方法可以成功地扩展到对这些其他几何形状和载荷组合的评估,并且比R6中提出的现有方法可以提供合理准确且保守程度较低的评估。第二篇论文“第2部分:实验应用”比较了g方法的应用和在可塑性发展范围内进行的实验数据。

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