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A comparison of residual stresses in multi pass narrow gap laser welds and gas-tungsten arc welds in AISI 316L stainless steel

机译:AISI 316L不锈钢多道窄缝激光焊和钨极氩弧焊中的残余应力比较

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摘要

Thick-section austenitic stainless steels have widespread industrial applications, especially in nuclear power plants. The joining methods used in the nuclear industry are primarily based on arc welding processes. However, it has recently been shown that narrow gap laser welding (NGLW) can weld materials with thicknesses that are well beyond the capabilities of single pass autogenous laser welding. The heat input for NGLW is much lower than for arc welding, as are the expected levels of residual stress and distortion. This paper reports on a preliminary investigation of the through-thickness 2D residual stresses distributions, distortions, and plastic strain characteristics, for the NGLW process using material thicknesses up to 20 mm. The results are compared with those obtained with gas-tungsten arc (GTA) welding. While further work is required on thicker test pieces, preliminary results suggest that the longitudinal tensile residual stresses in NGLW joints are 30-40% lower than those for GTA welds.
机译:厚截面奥氏体不锈钢具有广泛的工业应用,特别是在核电站中。核工业中使用的连接方法主要基于电弧焊接工艺。但是,最近显示,窄间隙激光焊接(NGLW)可以焊接厚度远远超过单程自发激光焊接能力的材料。 NGLW的热量输入远低于电弧焊,残余应力和变形的预期水平也很低。本文报道了使用厚度最大为20 mm的NGLW工艺进行的全厚度2D残余应力分布,变形和塑性应变特性的初步研究。将结果与通过钨极氩弧焊(GTA)焊接获得的结果进行比较。虽然需要对较厚的试件做进一步的工作,但初步结果表明,NGLW接头的纵向拉伸残余应力比GTA焊缝低30-40%。

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