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首页> 外文期刊>Transactions of the Indian Institute of Metals >Systematic Welding Process Parameter Optimization in Activated Tungsten Inert Gas (A-TIG) Welding of Inconel 625
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Systematic Welding Process Parameter Optimization in Activated Tungsten Inert Gas (A-TIG) Welding of Inconel 625

机译:激活钨惰性气体(A-TIG)焊接的系统焊接工艺参数优化625

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摘要

This article presents the welding process parameter optimization for activated tungsten inert gas welding of a 6.5 mm thick Inconel 625 plate. The experimental design L-25 has been undertaken to obtain optimal parameters for inputs, including welding current, torch travel speed and arc gap on penetration depth. Welding cross-sectional area, microhardness and welds bead width and bead height have been investigated using various mathematical optimization tools like grey relational analysis (GRA) and Technique for Order Preference by Similarity to Ideal Solution. ANOVA has been used to identify each input parameter's significance. Through bead on trial experimentation, the computed output results of GRA provided the following recommended settings such as 300 A welding current, 90 mm/min Torch travel speed and 5 mm Arc gap as the best optimized parameters. The optimized samples were examined by a scanning electron microscope with energy dispersive X-Ray spectroscopy techniques for a comprehensive study on the laves phase at the interdendritic regions of the weld zone. X-ray diffraction analysis revealed that the major element present in the weld zone was Ni due to which activated flux quickened the solidification rate and reduced laves phase formation.
机译:本文介绍了6.5毫米厚的Inconel 625板的活化钨惰性气体焊接的焊接工艺参数优化。实验设计L-25已经开展,以获得输入的最佳参数,包括焊接电流,割炬行进速度和弧形渗透深度的电弧间隙。使用灰色关系分析(GRA)等各种数学优化工具以及通过相似性与理想解决方案的顺序偏好,研究了焊接横截面积,微硬度和焊珠宽度和珠子高度。 ANOVA已被用来识别每个输入参数的意义。通过珠子对试验进行试验,GRA的计算输出结果提供了以下推荐的设置,例如300焊接电流,90毫米/分钟的火炬行程和5毫米电弧差距作为最佳优化参数。通过扫描电子显微镜检查优化的样品,该扫描电子显微镜具有能量分散X射线光谱技术,用于焊接区中间型区域的疏浚阶段综合研究。 X射线衍射分析表明,焊接区中存在的主要元素是Ni,因为它激活的通量加速凝固率和降低的熔化液相形成。

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