铝/钢线对接逆变电源冲击焊电弧形态及焊点成形

    Arc Shape and Weld Spot Forming of Aluminum/Steel Wire Percussive Welding by Inverter Power Supply

    • 摘要: 采用冲击焊实现了异种金属1100纯铝线和CP线的连接,并对不同焊接电流下的焊接接头进行了力学性能分析。在焊接过程中对电弧电压和焊接电流信号进行采集,以及采用高速数字相机记录电弧形态,分析了焊接过程的物理特征。结果表明,整个焊接过程经历了短路接触、引弧、燃弧和工件结合;随着焊接电流增大,电弧弧柱膨胀,温度升高,焊接接头的熔宽和熔高增大,抗拉载荷得到改善。但过大的电流使熔融金属塌陷,影响焊点成形,导致焊接接头强度略微下降。通过优化焊接参数,在电流为76 A时获得呈圆台型的焊接接头,最大抗拉载荷可达50.22 N。

       

      Abstract: The dissimilar metals of 1100 pure aluminum wire and CP wire were connected by percussive welding, and the mechanical properties of the welded joints under different welding currents were analyzed. During the welding process, arc voltage and welding current signals were collected, and arc morphology was recorded by high-speed digital camera, and the physical characteristics of the whole welding process were analyzed. The results show that the whole welding process has experienced short-circuit contact, arc starting, arc burning and workpiece combination. As the welding current increases, the arc column expands and the temperature increases, the weld width and weld height increase, and the tensile strength is improved. However, excessive current causes the molten metal to collapse, which affects the shape of the solder joint and results in a slight decrease in the strength of the welded joint. By optimizing the welding parameters, the truncated-cone-shaped welding joint is obtained when the current is 76 A, and the maximum tensile load can reach 50.22 N.

       

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