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Quality and productivity improvement in aluminium alloy thin sheet welding using alternating current pulsed metal inert gas welding system

机译:交流脉冲金属惰性气体保护系统在铝合金薄板焊接中的质量和生产率提高

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摘要

An alternating current (ac) pulsed metal inert gas (MIG) welding power source has been developed for welding thin sheets of aluminium alloys and the process features are investigated. Advantages such as high wire melting coefficient, low heat input, shallow penetration, and increased reinforcement height are obtained at high values of electrode negative ratio (ratio of electrode negative current integration to electrode negative plus electrode positive current integration over one pulse cycle). These features successfully counteract the problem of burnthrough in welding of thin sheet joints and greatly improve the bridging ability for wide gap joints. Thin sheet joints can be welded at high speed and with low distortion. By integrating the present welding power source with a welding robot, welding process and current waveform parameters can be defined by key operations in the teach pendant. It is possible to switch between welding processes such as ac pulsed MIG, direct current (dc) pulsed MIG, low frequency modulated ac pulsed MIG, and low frequency modulated dc pulsed MIG during a continuous welding run, so that the optimum welding process can always be selected.
机译:已经开发出一种交流(ac)脉冲金属惰性气体(MIG)焊接电源,用于焊接铝合金薄板,并研究了其工艺特点。在电极负压比的高值下(电极负电流积分与电极负电流加电极正电流积分的比值在一个脉冲周期内)可获得高导线熔化系数,低热量输入,浅穿透力和增加的增强高度等优点。这些特征成功地解决了薄板接头焊接中的烧穿问题,并大大提高了宽间隙接头的桥接能力。薄板接头可以高速且低变形地焊接。通过将当前的焊接电源与焊接机器人集成在一起,可以通过示教器中的关键操作定义焊接过程和电流波形参数。在连续焊接过程中,可以在焊接工艺(例如交流脉冲MIG,直流(DC)脉冲MIG,低频调制交流脉冲MIG和低频调制直流脉冲MIG)之间进行切换,以便始终可以实现最佳焊接工艺被选中。

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  • 来源
    《Science and Technology of Welding & Joining》 |2001年第4期|203-208|共6页
  • 作者单位

    The Welding and Mechatronics Division, Daihen Corporation, 5–1 Minamisenrioka, Settsu, Osaka, 566–0021, Japan;

    The Welding and Mechatronics Division, Daihen Corporation, 5–1 Minamisenrioka, Settsu, Osaka, 566–0021, Japan;

    The Welding and Mechatronics Division, Daihen Corporation, 5–1 Minamisenrioka, Settsu, Osaka, 566–0021, Japan;

    The Joining and Welding Research Institute, Osaka University, 11–1 Mihogaoka, Ibaraki, Osaka, 567–0047, Japan;

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