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Optimization of MIG Welding Parameters to Control the Angular Distortion in Fe410WA Steel

机译:Fe410WA钢中MIG焊接参数的优化以控制角变形

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摘要

In the fabrication industry, metal inert gas (MIG) welding is a very important process and Fe410WA is the most commonly used material for the manufacturing of fabricated structures. During the preparation of butt welded joints, angular distortion is a major concern. Angular distortion can be minimized by optimizing the input parameters. In this paper, a study of the optimization of controllable input parameters such as current, voltage and gas flow rate by using the Taguchi method is performed. Butt welding samples were prepared by using three levels and three factors. An orthogonal array of nine trials is considered for the design of the experiment. After measuring the distortion angle, observed readings were verified by using analysis of variance (ANOVA) technique and it was found that the p-values were less than 0.05. Theoretical calculations were performed to optimize the process parameters to achieve the minimum distortion angle. A confirmation test was taken for validation purposes and to confirm the result.
机译:在制造行业中,金属惰性气体(MIG)焊接是非常重要的过程,而Fe410WA是制造预制结构最常用的材料。在准备对接焊缝期间,角度变形是一个主要问题。可以通过优化输入参数来最小化角度失真。本文通过Taguchi方法对可控制输入参数(例如电流,电压和气体流量)的优化进行了研究。通过使用三个等级和三个因素来制备对接焊样品。设计九个试验的正交阵列。测量变形角后,使用方差分析(ANOVA)技术验证观察到的读数,发现p值小于0.05。进行了理论计算以优化工艺参数,以实现最小变形角。进行确认测试用于确认目的并确认结果。

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