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Effects of geometry and combined loading on steady-state creep stresses in welded branches

机译:几何形状和组合载荷对焊接分支稳态蠕变应力的影响

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摘要

In our previous paper, it was found that the mis-match effect in creep on steady-state stresses within the weld metal for a large bore branch junction could be uniquely quantified by the mis-match factor defined as a function of the creep stress exponent and the ratio of creep constants for the base and weld materials. Furthermore ratios of section-averaged (effective and maximum principal) stresses for the mis-matched case to those for the even-matched case were linearly dependent on the mis-match factor. Above results were obtained for a specific branch geometry under single loading. This paper extends our previous analysis to other branch geometries and to combined loading. It is found that above conclusions can be applied to general branch components under combined loading.
机译:在我们以前的论文中,发现对于大口径分支结,蠕变对焊接金属内稳态应力的失配效应可以用失配因子来唯一地量化,失配因子是蠕变应力指数的函数以及母材和焊接材料的蠕变常数之比。此外,不匹配情况下的平均截面应力(有效应力和最大主应力)与偶数匹配情况下的截面应力之比线性依赖于不匹配因子。以上结果是在单载荷下针对特定分支几何结构获得的。本文将我们先前的分析扩展到其他分支几何以及组合荷载。发现以上结论可应用于组合荷载作用下的一般支路构件。

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