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Plasma Welding of Aluminum Alloys with the Use of Two Direct ARCS on Reverse-Polarity Current

机译:在反向极性电流下使用两个直接ARCS进行铝合金的等离子焊接

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The use of plasma-based technologies elevates productivity and product quality in the fabrication of welded structures made of aluminum and its alloys. High-power heat sources must be used to achieve high levels of productivity in the welding of aluminum structures. Also, the presence of an oxide fi lm that impedes the formation of the weld dictates the use of reverse-polarity current in the arc welding of such structures. The use of combination heat sources can resolve the problem of improving quality and productivity in the welding of aluminum alloys. This article presents results from a study of the plasma welding of aluminum alloys with the use of a dual-arc plasmotron that provides for the combustion of two direct arcs on reversepolarity current. It is shown that the plasmotron can operate stably under these conditions. Use of the given technology reduces the thermal load on the plasmotron, enhances its ability to melt through the alloys, improves cathodic cleaning of the metal's surface in the region of the weld, and ensures the formation of welds that are free of defects.
机译:基于等离子体的技术的使用提高了铝及其合金制成的焊接结构的生产效率和产品质量。在铝结构的焊接中,必须使用大功率热源来实现高水平的生产率。而且,氧化物膜的存在阻碍了焊缝的形成,这决定了在这种结构的电弧焊中使用反极性电流。使用组合热源可以解决改善铝合金焊接质量和生产率的问题。本文介绍了使用双电弧等离子激元对铝合金进行等离子焊接的研究结果,该双等离子等离激元可在反向极性电流上燃烧两个直接电弧。结果表明,等离激元可以在这些条件下稳定运行。使用给定的技术可降低等离激元上的热负荷,增强其在合金中熔化的能力,改善对焊缝区域中金属表面的阴极清洁,并确保形成无缺陷的焊缝。

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