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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimizing pulsed current parameters to minimize corrosion rate in gas tungsten arc welded titanium alloy
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Optimizing pulsed current parameters to minimize corrosion rate in gas tungsten arc welded titanium alloy

机译:优化脉冲电流参数以最小化钨极电弧焊钛合金的腐蚀速率

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摘要

The preferred process for welding titanium alloy is frequently gas tungsten arc (GTA) welding due to its comparatively easier applicability and better economy. Weld fusion zones of this alloy typically exhibit coarse columnar grains and lead to inferior mechanical and metallurgical properties. In the case of single pass GTA welding of a thinner section of this alloy, the pulsed current has been found to be beneficial primarily due to grain refinement of the weld fusion zone over the conventional continuous current process. Fusion zone grain refinement is controlled by pulsed current parameters such as peak current, back ground current, pulse frequency and pulse-on-time. In this investigation, a mathematical model has been developed to predict corrosion rate of gas tungsten arc welded titanium alloy by incorporating pulsed current parameters. Four factors, five level, central composite, rotatable design matrix has been used to minimize the experimental conditions. A mathematical model has been developed by response surface method (RSM). The developed model has been optimized using genetic algorithm (GA) and contour plots to attain minimum corrosion rate in the weld fusion zone.
机译:钛合金的首选焊接方法通常是气体钨极电弧焊(GTA),因为它的适用性相对较容易且经济性更好。这种合金的焊接熔合区通常呈现出粗大的柱状晶粒,并导致机械和冶金性能较差。在这种合金的较薄部分的单道GTA焊接中,发现脉冲电流是有益的,这主要是由于与常规连续电流工艺相比,焊接熔合区的晶粒细化。熔合区晶粒细化由脉冲电流参数控制,例如峰值电流,背景电流,脉冲频率和脉冲接通时间。在这项研究中,已经开发出数学模型来通过结合脉冲电流参数来预测钨极氩弧焊钛合金的腐蚀速率。四个因子,五个级别,中央复合,可旋转设计矩阵已用于最小化实验条件。通过响应面法(RSM)建立了数学模型。使用遗传算法(GA)和等高线图对开发的模型进行了优化,以在焊缝融合区获得最低的腐蚀速率。

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