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Optimization of resistance spot welding process parameters and microstructural examination for dissimilar welding of AISI 316L austenitic stainless steel and 2205 duplex stainless steel

机译:AISI 316L奥氏体不锈钢和2205双相不锈钢不同焊接电阻点焊工艺参数优化和微观结构检测

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摘要

Resistance spot welding (RSW) involves joining of contacting surfaces by heat generated by resistance to electric current. The process is swift and finds demand in automobile industries for mass production. In spite of all the assets of the process, it yields a poor quality welds and inferior weld strength at the inner region of the joint interface. This may be improved by accurate setting of control parameters. The objective of this study is to determine the effect of various control parameters like electrode tip diameter, welding current, and heating cycle on the nugget size and tensile shear strength of dissimilar metal spot welding of 2-mm-thick AISI 316L austenitic stainless steel and 2205 Duplex Stainless Steel sheets. The Taguchi's L27 orthogonal array (OA) design is selected to conduct the experimental spot welding trials on the dissimilar materials. Subsequently, the specimens are examined usinganalysis of variance (ANOVA) technique to customize optimal parameter setting to obtain high tensile strength and favorable weld quality characteristics. The results reveal that welding current is the most dictating factor to achieve highest tensile strength with superior weld quality. Also, weld samples are prepared for metallographic examination from cross section areas of resistance spot welds to examine microstructure changes and ferrite content measurement in different regions of weld nugget. The microstructure examination shows that the weld nugget consists of ferrite and austenite and ferrite and there is no precipitate of detrimental phases in the weldment.
机译:电阻点焊(RSW)涉及通过接触到电流电阻产生的热表面的接合。这个过程是迅速而认定在汽车行业的需求进行批量生产。尽管该方法的所有资产的,它产生一个低质量的焊缝和低劣的焊接强度在接合界面的内部区域。这可以通过控制参数精确地设置得到改善。本研究的目的是确定各种控制参数等的电极尖端直径,焊接电流,并在熔核尺寸加热周期和异种金属点焊的2毫米厚的AISI 316L奥氏体不锈钢的拉伸剪切强度的效果和2205个双相不锈钢片材。田口L27正交阵列(OA)设计被选择进行实验点焊在异种材料试验。随后,将试样进行检查方差分析(ANOVA)法usinganalysis定制最佳参数设置,以获得高的拉伸强度和良好的焊接质量特性。结果表明,焊接电流是实现具有优良的焊缝质量的拉伸强度最高的最口述因素。另外,焊接的样品制备从电阻焊点的横截面面积金相检验以检查微观结构变化和熔核的不同区域的铁素体含量的测量。的金相检验表明,该焊接熔核由铁素体和奥氏体和铁素体,并且没有在焊件有害相的沉淀。

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