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Application of GRA and TOPSIS Optimization Techniques in GTA Welding of 15CDV6 Aerospace Material

机译:GRA和TOPSIS优化技术在15CDV6航空航天材料GTA焊接中的应用

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In this article, an attempt was made to optimize the welding parameters of gas tungsten arc welding of 15CDV6 steel. Experiments based on Taguchi's L9 orthogonal array were carried out in this research paper. The input parameters such as current, voltage, travel speed were considered for joining 15CDV6 plates of thickness 3.7 mm. Aftermath, the welds were subjected to post weld heat treatment. The performance characteristics such as bead width, reinforcement, tensile strength, hardness and depth of penetration of the welds were also measured. Grey relational analysis (GRA) and technique for order preference by similarity to ideal solution method (TOPSIS) were used for identifying the optimised input parameters. Analysis of variance was used to identify the influence of each individual parameter on the multi-objective function. The metallurgical characterisations of the optimised weld were compared with the microstructures obtained using optical microscope. It was made clear that both GRA and TOPSIS produced different set of optimized parameters. But on experimentation, it was found that optimized parameters obtained from TOPSIS produced weld with better properties. At the initial stage, the base metal reflected inferior properties to weldments but there was a significant improvement in the properties of base metal after post weld heat treatment.
机译:在本文中,尝试优化15cdv6钢的气体钨弧焊的焊接参数。基于Taguchi的L9正交阵列的实验在本研​​究论文中进行。考虑电流,电压,行驶速度的输入参数,用于连接15cdv6厚度3.7mm。随后,焊缝经过焊接后热处理。还测量了珠子宽度,增强,拉伸强度,硬度和焊缝渗透深度的性能特性。使用与理想解决方法(TOPSIS)相似性的灰色关系分析(GRA)和顺序优先技术用于识别优化的输入参数。方差分析用于识别每个单独参数对多目标函数的影响。将优化焊缝的冶金特征与使用光学显微镜获得的微观结构进行比较。明确表示GRA和TOPSIS都产生了不同的一组优化参数。但是,在实验上,发现从Topsis获得的优化参数产生的焊缝具有更好的性能。在初始阶段,基础金属反射到焊接的劣质性质,但在焊接后热处理后贱金属的性质存在显着改善。

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