响应面法
钨极气体保护焊
焊接
中心组合设计
材料科学
实验设计
穿透深度
机械工程
工艺优化
过程变量
过程(计算)
工程制图
电弧焊
工程类
计算机科学
冶金
数学
统计
物理
机器学习
光学
操作系统
环境工程
作者
P. Vasantharaja,M. Vasudevan
标识
DOI:10.1177/1464420715619192
摘要
In the present work, the optimization of Activated TIG (A-TIG) welding process parameters to achieve the desired weld bead shape parameters such as depth of penetration, bead width, and heat-affected zone (HAZ) width have been carried out using response surface methodology (RSM). The main problem faced in fabrication of weld joints is the selection of optimum combination of input variables for achieving required quality of welds. This problem can be solved by development of mathematical model and execution of experiments by RSM. Central composite design of RSM has been used to generate the design matrix for generating data on the influence of A-TIG welding process parameters. The input variables considered were welding current, torch speed, electrode tip angle, and arc gap. The response variables considered were depth of penetration, bead width and HAZ width. A second-order response surface model is developed for predicting the response for the set of given input process parameters. Then, numerical and graphical optimization is performed using RSM to obtain the desired depth of penetration, bead width, and target HAZ width using desirability approach.
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