首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Parametric analysis of stresses in welded branched pipes under creep conditions
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Parametric analysis of stresses in welded branched pipes under creep conditions

机译:蠕变条件下焊接支管应力的参数分析

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摘要

The effect of weld properties on the steady-state creep rupture stresses, failure lives, and failure positions within multi-material finite element models of three typical branched steam pipe configurations is investigated using service-aged CrMoV creep properties. A general formulation, multi-material interpolation technique for steady-state creep is shown to be applicable to the parametric study of a three-material welded branched pipe with respect to the steady-state creep constants. An approximate interpolation procedure for power-law creep is implemented to reduce the number of analyses needed to span the range of material parameters. The method is used to predict creep stresses at several critical regions within the heat-affected zones, parent material, and weld metal regions of the branched pipe for three typical CrMoV weldment material sets. The advantages of the method are related to the small number of analyses required and the simple and compact way of presenting results for weld assessment and design. The results can be used to improve life-assessment procedures and to provide guidance to component designers.
机译:使用使用寿命长的CrMoV蠕变特性,研究了焊接特性对三种典型分支蒸汽管道配置的多材料有限元模型内稳态蠕变断裂应力,破坏寿命和破坏位置的影响。对于稳态蠕变常数,一种通用公式表示的多材料插值技术适用于三材料焊接支管的参数研究。实施了幂律蠕变的近似插值程序,以减少跨越材料参数范围所需的分析次数。该方法用于预测三种典型的CrMoV焊接材料组的热影响区,支管的母材和焊接金属区域内几个关键区域的蠕变应力。该方法的优势与所需的分析数量少以及为焊接评估和设计呈现结果的简单而紧凑的方式有关。结果可用于改善寿命评估程序,并为组件设计人员提供指导。

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