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Quantification of stress redistribution due to mismatch in creep properties in welded branch pipes

机译:焊接支管蠕变特性不匹配导致的应力重新分布的量化

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This paper reports steady-state stress distributions within the weld metal in a welded branch component, via detailed three-dimensional elastic-creep finite element analyses. The creep exponent and constants for the base and weld metal are systematically varied to simulate under-matching, even-matching and over-matching conditions in creep. Various loading conditions are also considered to see the effect of the loading mode. It is found that the mismatch effect in creep on steady-state stresses within the weld metal can be uniquely quantified by the mismatch factor, defined as a function of creep exponent and constant. Ratios of section-averaged (effective and maximum principal) stresses for the mismatched case to those for the even-matched case are linearly dependent on the mismatch factor.
机译:通过详细的三维弹性蠕变有限元分析,本文报告了焊接分支部件中焊接金属内的稳态应力分布。系统地改变了母材和焊缝金属的蠕变指数和常数,以模拟蠕变中的欠匹配,偶匹配和过匹配条件。还考虑了各种加载条件以查看加载模式的效果。已经发现,蠕变对焊接金属内稳态应力的失配效应可以通过失配因子来唯一地量化,失配因子定义为蠕变指数和常数的函数。不匹配情况下的截面平均应力(有效主应力和最大主应力)与偶数匹配情况下的平均应力之比线性依赖于不匹配因子。

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