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Low-Power Laser/TIG Hybrid Welding Process of Magnesium Alloy with Filler Wire

机译:填充丝镁合金的低功率激光/ TIG混合焊接工艺

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摘要

In the welding process of magnesium alloy, evaporative loss of alloying elements will induce welding defects and reduce the mechanical properties of weld joint. In this article, low-power laser/arc hybrid welding process of magnesium alloy with filler metal is studied to resolve this problem. Under the optimal welding parameters, weld joint with good formation and high quality can be obtained. The feeding modes of filler wire and the effects of welding parameters on weld joint are studied. The grain size of fusion zone and heat-affected zone (HAZ) become uniform, and the tensile strength of welding joint reaches about 95% of base metal. Besides, the arc plasma behaviors and plasma spectra are investigated, and the results show that the arc plasma expands and the electron temperature of arc plasma decreases, but the electric conducting route concentrates and the energy density of arc plasma enhances, which improves the welding penetration significantly.
机译:在镁合金的焊接过程中,合金元素的蒸发损失会引起焊接缺陷并降低焊接接头的机械性能。为了解决这个问题,本文研究了镁合金与填充金属的低功率激光/电弧混合焊接工艺。在最佳焊接参数下,可以获得良好的成形和高质量的焊接接头。研究了填充焊丝的进给方式和焊接参数对焊缝的影响。熔合区和热影响区(HAZ)的晶粒尺寸变得均匀,焊接接头的抗拉强度达到母材的约95%。此外,研究了电弧等离子体的行为和等离子体光谱,结果表明,电弧等离子体膨胀,电弧等离子体的电子温度降低,但导电路径集中,电弧等离子体的能量密度提高,从而提高了焊接熔深显着。

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