Steel., Sukarman, Amri Abdulah, Jatira, Dede Ardi Rajab, Rohman, C. Anwar, Y. Aminanda, M. Akbar
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引用次数: 13
摘要
本研究的特点是利用气动力系统(PFS)优化电阻点焊的分析和实验结果。对SECC-AF (JIS G 3313)镀锌钢材料与SPCC-SD低碳钢的接合进行了优化。sec - af是一种SPCC-SD (JIS G 3141)板材,涂有锌(Zn),厚度约为2.5微米。金属表面的锌镀层使其可焊性降低。本研究旨在通过指定的电阻点焊参数组合获得最高的抗剪强度试验结果。研究方法采用四变量和实验水平相结合的田口法。实验电平为第一个参数2级,其他参数3级。Taguchi优化实验结果表明,在22个挤压时间周期、25 kA焊接电流、0.6 s焊接时间和12个保持时间周期下,拉伸剪切强度最高,为5049.64 n。信噪比分析发现,焊接电流的影响最为显著,其次是焊接时间、挤压时间和保温时间。δ S/N值分别为1.05、0.67、0.57和0.29。
Optimization of Tensile-Shear Strength in the Dissimilar Joint of Zn-Coated Steel and Low Carbon Steel
The present study features analytical and experimental results of optimizing resistance spot welding performed using a pneumatic force system (PFS). The optimization was performed to join SECC-AF (JIS G 3313) galvanized steel material with SPCC-SD low carbon steel. The SECC-AF is an SPCC-SD (JIS G 3141) sheet plate coated with zinc (Zn) with a thickness of about 2.5 microns. The zinc coating on the metal surface causes its weldability to decrease. This study aims to obtain the highest tensile-shear strength test results from the combination of the specified resistance spot welding parameters. The research method used the Taguchi method using four variables and a combination of experimental levels. The experimental levels are 2-levels for the first parameter and 3-levels for other parameters. The Taguchi optimization experimental results achieved the highest tensile-shear strength at 5049.64 N. It properly worked at 22 squeeze time cycles, 25 kA of welding current, and 0.6-second welding time and 12 holding-time cycles. The S/N ratio analysis found that the welding current had the most significant effect, followed by welding time, squeeze time, and holding time. The delta S/N ratio values were 1.05, 0.67, 0.57 and 0.29, respectively.