焊接和切割后的残余应力分布

A. Manai
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引用次数: 0

摘要

焊接是一种接合过程,它会导致局部材料发生相当大的变化,并形成焊接残余应力。焊接残余应力可以是压缩应力(对疲劳寿命有利)或拉伸应力(对疲劳寿命有害)。在本章中,对焊接过程后残余应力分布进行了概率分析。一些研究人员指出,引入应力的类型是压应力还是拉应力取决于几个因素。本章列出了其中的一些因素。大型结构的焊接在车间进行,然后进行切割过程以构建结构部件的精确尺寸。这种切削过程对焊缝残余应力的再分布有显著影响。对切割后焊缝残余应力的再分布进行了研究。结果表明,与焊缝长度无关,残余应力在焊缝长度的60%处重新分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Residual Stresses Distribution Posterior to Welding and Cutting Processes
Welding is a joining process that leads to considerable change in the local material and the formation of welding residual stresses (RS). Welding residual stresses can be compressive (beneficial for the fatigue life) or tensile (harmful for the fatigue life). In this chapter, a probabilistic analysis of residual stresses distribution posterior to welding processes is carried out. Several researchers stated that the type of the introduced stresses either compressive or tensile depends on several factors. Some of these factors are listed in this chapter. Welding of mega-structures is carried out in the workshops, then a cutting process takes place to construct the exact size of the structural components. This cutting process has a significant effect on the weld residual stresses re-distribution. A study of the re-distribution of the weld residual stress after cutting was performed. It was found that independent of the weld seam length, the residual stresses re-distributed up to 60 % of the weld seam length.
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