Optimization of GTA Welding Parameters for AISI 304 Stainless Steel using Taguchi Method

Mayank Shrivastava, Rajeev Kumar
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Abstract

This paper presents analyze the effects of process parameters on weld distortion and depth of weld penetration of GTA welded stainless steel plate of AISI 304 stainless steel Grade. The main aim of varying process parameter is to achieve minimum weld distortion and maximum weld bead penetration or depth of penetration. Design of experiment approach was used to plan and design the experiment to study the effect of welding process parameter on weld penetration of GTA welded stainless steel plate of AISI 304 stainless steel grade. Four input parameter- welding current, gas flow rate, root face and welding speed were selected to ascertain their effect on the distortion and depth of penetration. L9 Orthogonal Array technique is used to formulate the experiment layout. From the results obtained it is found that the Welding speed (WS) is the most significant parameter for distortion during gas tungsten arc welding. The recommended parametric combination for optimum distortion is welding current (90 A), gas flow rate (10 LPM), root face (1 mm) and welding speed (31.578 mm/min) and the optimum response value is 2.3996 mm. A confirmation experiment was also performed and verified for the effectiveness of the Taguchi method and the % error between predicted optimal and experimental values for selected response parameters were found well within the acceptable limit.
用田口法优化AISI 304不锈钢的GTA焊接参数
分析了aisi304不锈钢等级的GTA焊接不锈钢板的工艺参数对焊缝变形和焊深的影响。改变工艺参数的主要目的是实现最小的焊接变形和最大的焊头熔透或熔透深度。采用试验设计的方法对试验进行了规划和设计,研究了焊接工艺参数对AISI 304不锈钢牌号GTA焊接不锈钢板熔深的影响。选取焊接电流、气体流量、根面和焊接速度4个输入参数,确定其对焊缝变形和焊深的影响。采用L9正交阵列技术制定实验布局。结果表明,焊接速度是影响钨极气体保护焊变形的最重要参数。建议的最佳变形参数组合为焊接电流(90 A)、气体流速(10 LPM)、根面(1 mm)和焊接速度(31.578 mm/min),最佳响应值为2.3996 mm。对田口法的有效性进行了验证实验,所选响应参数的预测最优值与实验值之间的%误差均在可接受范围内。
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