Effects of Welding Sequences on Residual Stresses in a Butt Joint of Austenitic Piping

Chouaib Zeghida, Abdelmoumene Guedri
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Abstract

This study aimed to investigate the effects of welding sequences on residual stresses and distortions of welded components, using computational thermomechanical model-based finite element analysis (FEA). Residual stresses, a common outcome of welding, can cause material distortions and reduce product quality. We used FEA to simulate transient temperature fields generated during welding and evaluated their impact on the amplitude and distribution of residual stresses, the size of fusion and heat-affected zones, material microstructures, properties and fracture toughness. The study focused on an austenitic pipe butt junction, a commonly welded component in various industries. The identification of optimal welding sequences can minimize residual stresses and distortions, providing valuable insights for the development of efficient welding techniques, improved product quality, and reduced manufacturing costs.
焊接顺序对奥氏体管道对接接头残余应力的影响
本研究旨在研究焊接顺序对焊接构件残余应力和变形的影响,采用基于计算热力学模型的有限元分析(FEA)。残余应力是焊接过程中常见的结果,它会导致材料变形,降低产品质量。采用有限元法模拟焊接过程中产生的瞬态温度场,评估其对残余应力振幅和分布、熔合区和热影响区大小、材料显微组织、性能和断裂韧性的影响。该研究的重点是奥氏体管道对接接头,这是各种工业中常用的焊接部件。确定最佳焊接顺序可以最大限度地减少残余应力和变形,为开发高效焊接技术、提高产品质量和降低制造成本提供有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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