Effects of Weld Heat Input on Mechanical Characteristics of Low Carbon Sheet Steels

Mechanics Pub Date : 2024-04-23 DOI:10.5755/j02.mech.34356
S. O. Eruslu, Ismail Berk Akbulut, I. Dalmis
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Abstract

This study focuses on examining the variation in mechanical characteristics of low-carbon sheet steels when they are subjected to heat input from Tungsten Inert Gas (TIG) welding. The weld heat input parameters, such as welding speed and current, were controlled through the TIG welding process. A finite element analysis was performed to evaluate the couple field thermomechanical effects of the weld heat line, using the Gauss heat flux approach for thermal heat variation across the weld heat-affected zone. The numerical study yielded results for weld heat-affected deflection, residual stress, and modal analysis through the finite element model. It was found that the ductility decreased and hardness increased in the fusion zone, as a function of weld current and speed. The residual stresses and their zone of influence, as determined by weld line parameters, were found to be key factors affecting deflection and natural frequencies in structural aspects of low carbon sheet steels.
焊接热输入对低碳薄板钢机械特性的影响
本研究主要探讨低碳薄板钢在钨极惰性气体(TIG)焊接热输入作用下的机械特性变化。通过 TIG 焊接过程控制焊接热输入参数,如焊接速度和电流。采用高斯热通量法对整个焊接热影响区的热量变化进行了有限元分析,以评估焊接热线的耦合场热机械效应。数值研究通过有限元模型得出了焊缝热影响挠度、残余应力和模态分析的结果。研究发现,随着焊接电流和速度的变化,熔合区的延展性降低,硬度增加。研究发现,由焊接线参数决定的残余应力及其影响区域是影响低碳薄板钢结构挠度和固有频率的关键因素。
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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