The Effect of Spot Welding Parameters for Dissimilar Material Mild Steel and Galvanizes Steel on Nugget Size and Mechanical Strength

A. Hayat, La Ode Al Muslim, A. Y. Aminy
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Abstract

The objective of this research was to analyze the effect of spot welding parameters on the size of the weld nugget and the maximum shear strength on dissimilar material mild steel and galvanized steel. The Taguchi and ANOVA methods were used to determine the welding parameters’ contribution to joint quality. Experimental design using Minitab-19 software with Taguchi method of 3 level 3 factor with L27 runs. Specimen size and dimensions were made using ASTM D1002 standard, with a plate thickness of 0.8 mm. Taguchi analysis S/N ratio data mean for weld nugget diameter with three levels of current used, 4 kA, 6 kA, and 8kA, shows the most influential on the diameter of the weld nugget was at 8 kA. The three levels of welding time used, 2s, 4s, and 6s, show the most influential on the diameter of the nugget the weld was at the third level for 6 seconds. It found that there was no significant difference in the size nugget at the three electrode pressure levels of 30 Ppsi, 40 Psi, and 50 Psi. Based on the tensile test and Taguchi analysis, the lowest shear strength was found in a weld nugget size of 3.15 mm at a welding current of 4 kA, a welding time of 2 seconds, an electrode pressure of 30 Psi, with a shear tensile strength of 300.19 N. Along with an increase in the size weld nugget correlated to an increase of shear strength. The highest shear tensile strength was found in the nugget size of 4.16 mm, with a welding current of 8 kA, welding time of 2 seconds, electrode pressure of 50 Psi, with a shear tensile strength of 3383.43 N. From the ANOVA, it found that the three factors of spot welding parameters were used, the most influential parameter in the formation of weld nuggets was welding current with a contribution of 84.86% then followed by welding time with a contribution of 14.86% and electrodes force with a contribution of 0.13%. Then from the three factors of spot welding parameters that were used the most influential parameter on the maximum shear tensile strength was the welding current with a contribution of 95.86 % then followed by welding time with a contribution of 0.52% and electrodes force with a contribution of 0.05%.
异种材料低碳钢和镀锌钢点焊参数对熔核尺寸和机械强度的影响
本研究的目的是分析不同材料的低碳钢和镀锌钢点焊参数对焊缝熔核尺寸和最大抗剪强度的影响。采用田口法和方差分析法确定焊接参数对接头质量的贡献。实验设计采用Minitab-19软件,采用田口三水平三因子法,L27次运行。试样尺寸和尺寸采用ASTM D1002标准,板厚0.8 mm。在4 kA、6 kA和8kA三个电流水平下,对焊缝熔核直径的信噪比数据均值的影响最大的是8kA电流。焊接时间为2s、4s和6s,对熔核直径的影响最大,焊接时间为第3级,焊接时间为6秒。研究发现,在30 Ppsi、40 Psi和50 Psi三个电极压力水平下,熔核的大小没有显著差异。拉伸试验和Taguchi分析表明,在焊接电流为4 kA、焊接时间为2秒、电极压力为30 Psi时,焊接熔核尺寸为3.15 mm的焊缝抗剪强度最低,其抗剪强度为300.19 n。随着焊核尺寸的增大,抗剪强度也相应增大。当焊核尺寸为4.16 mm,焊接电流为8 kA,焊接时间为2秒,电极压力为50 Psi时,剪切抗拉强度最高,为3383.43 n。对焊缝掘金形成影响最大的参数是焊接电流,其贡献率为84.86%,其次是焊接时间,其贡献率为14.86%,电极力的贡献率为0.13%。从点焊参数的三个影响因素来看,对最大剪切抗拉强度影响最大的参数是焊接电流,对最大剪切抗拉强度的贡献为95.86%,其次是焊接时间,对最大剪切抗拉强度的贡献为0.52%,电极力的贡献为0.05%。
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