首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Evaluation of through-thickness residual stresses in conventional and narrow grooved stainless steel welds
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Evaluation of through-thickness residual stresses in conventional and narrow grooved stainless steel welds

机译:常规和窄槽不锈钢焊缝中通过厚度残余应力的评价

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摘要

Thick AISI 304L stainless steel plates were welded using the gas metal arc welding process, and through-thickness residual stresses were evaluated by finite element simulation and the deep hole drilling technique. 3D moving heat source-based thermo-mechanical models were implemented to evaluate through-thickness residual stresses. The effects of the weld groove geometries and external restraints on the pattern of through-thickness residual stresses were studied. The maximum magnitude of locked-in residual stresses was recorded beneath the top surface, at a depth of around 6 mm. In comparison to conventional weld groove, the narrow weld groove configuration exhibited a 20-40% reduction in peak residual stresses. A significant rise in residual stresses was observed in constrained welds. The effect of the yield strength of the filler material on the evaluation of the through-thickness residual stress distribution in the course of finite element modeling was illustrated. The evolution of through-thickness residual stresses was also assessed concerning each weld pass.
机译:使用气体金属弧焊工艺焊接厚的AISI 304L不锈钢板,通过有限元模拟和深孔钻井技术评估通过厚度的残余应力。实现了3D移动热源的热机械模型以评估通过厚度的残余应力。研究了焊接槽几何形状的效果和对通过厚度残余应力的图案的影响。锁定在顶表面下方的锁定残余应力的最大幅度在约6mm的深度下记录。与传统的焊接槽相比,窄的焊接槽构造的峰值残余应力降低了20-40%。在约束焊缝中观察到残余应力的显着升高。填料强度的屈服强度对有限元建模过程中的贯穿厚度残余应力分布评价的影响。还评估了通过厚度残余应力的演变,关于每个焊接通过。

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