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Measurement and modelling of the residual stresses in autogenous and narrow gap laser welded AISI grade 316L stainless steel plates

机译:自生和窄缝激光焊接AISI级316L不锈钢板中残余应力的测量和建模

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摘要

Thick-section austenitic stainless steels have widespread industrial applications, where stress-corrosion cracking is often of major concern. Problems tend to arise in the vicinity of welds, where substantial residual stresses often reside. This paper describes an investigation into the residual stresses in autogenous high power laser welds and narrow gap laser welds (NGLW) in 10 mm thick AISI grade 316L steel plates, using both neutron diffraction and the contour method. The influences of laser power, welding speed and the time interval between weld passes on residual stress were analysed. For the NGLW process, finite element modelling was employed to understand the influence of thermal history on residual stress. The results for the NGLW technique show that the laser power has a significant effect on the peak value of residual stress, while the welding speed has a more significant influence on the width of the region sustaining tensile stresses.
机译:厚截面奥氏体不锈钢具有广泛的工业应用,应力腐蚀开裂通常是主要关注的问题。在焊缝附近往往会出现问题,在焊缝附近通常会残留大量的残余应力。本文描述了使用中子衍射和轮廓法对10 mm厚AISI级316L钢板的自生高功率激光焊缝和窄间隙激光焊缝(NGLW)中的残余应力进行的研究。分析了激光功率,焊接速度和焊缝间隔时间对残余应力的影响。对于NGLW过程,采用有限元建模来了解热历史对残余应力的影响。 NGLW技术的结果表明,激光功率对残余应力的峰值有显着影响,而焊接速度对承受拉伸应力的区域的宽度有更显着的影响。

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