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Investigation on Weld Bead Geometry of AISI 201LN in GMAW-Cold Metal Transfer (CMT) Process

机译:艾西201Ln焊缝几何形状的调查 - 冷金属转移(CMT)工艺

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The welding of thin sheet of austenitic stainless steel (SS201LN) is a challenging task due to distortion and high heat input associated during tungsten inert gas (TIG) process. A robotic cold metal transfer (CMT) process is the modified version of gas metal arc welding (GMAW) process in which the heat input is reduced due to controlled wire feeding and higher welding speed. In this work, GMAW (with CMT) process of AISI 201LN stainless steel plate is performed using Box-Behnken design (BBD). Wire feed rate (WFR), welding speed (S), and nozzle to work distance (NTD) are considered weld parameters to investigate process characteristics of weld bead viz., penetration (P), width (W), and reinforcement (R). Predictive models are developed using response surface methodology (RSM) and model validation shows an average error % of 2.61 for penetration. ANOVA analysis shows that WFR and welding speed are the most influencing factors, whereas NTD having the least influence in determining penetration. The parametric optimization of all responses simultaneously is carried out using desirability analysis (DA) obtaining composite desirability of 0.7216 mm/min.
机译:薄片奥氏体不锈钢(SS201LN)的焊接是由于钨惰性气体(TIG)工艺相关的变形和高热输入而具有具有挑战性的任务。机器人冷金属转移(CMT)工艺是改进的气体金属弧焊(GMAW)过程,其中由于受控的送料和更高的焊接速度而减小了热输入。在这项工作中,使用Box-Behnken Design(BBD)进行AISI 201LN不锈钢板的GMAW(带CMT)过程。电线进料速率(WFR),焊接速度和喷嘴到工作距离(NTD)被认为是研究焊缝珠宽的工艺特性的焊接参数,穿透(P),宽度(W)和加固(R) 。使用响应面方法(RSM)开发预测模型,模型验证显示了2.61的平均误差%,用于渗透。 ANOVA分析表明,WFR和焊接速度是影响最大的因素,而NTD对确定渗透率最小的影响。使用期望的分析(DA)同时进行所有反应的参数优化,得到0.7216mm / min的复合期望。

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