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Improvements of the welding performance of plasma arcs by a superimposed fiber laser beam

机译:叠加光纤激光束改善等离子弧焊接性能

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Details and results of experimental investigations of a laser-supported plasma arc welding process are presented. The particular feature of the realized experimental set-up is the coaxial arrangement of a single-mode fibre laser beam through a hollow tungsten electrode in combination with a modified plasma welding torch. The analysis of the welding capabilities of the combined laser-arc source comprises high-speed video recordings of the arc shape and size, corresponding simultaneous measurements of the arc voltage as well as an evaluation of the resultant weld seam geometries. Results of welding trials on different types of steel and aluminum alloys are discussed. The corresponding investigations reveal that a fibre laser beam with a wavelength of 1.07 microns can have a crucial impact on the arc and welding characteristics for both categories of materials even at very low laser power output levels. Beneficial effects are especially observed with high welding speeds. In that particular case the arc root and therefore arc column can be substantially stabilized and guided by the laser-induced hot spot.
机译:介绍了激光支撑等离子弧焊接工艺的实验研究的细节和结果。所实现的实验装置的特殊特征是,单模光纤激光束通过空心钨电极与改进的等离子焊枪结合在一起的同轴布置。对组合激光电弧源的焊接能力的分析包括电弧形状和大小的高速视频记录,电弧电压的相应同时测量以及对所得焊缝几何形状的评估。讨论了在不同类型的钢和铝合金上进行焊接试验的结果。相应的研究表明,即使在非常低的激光功率输出水平下,波长为1.07微米的光纤激光束也会对两种材料的电弧和焊接特性产生至关重要的影响。在高焊接速度下尤其可以观察到有益效果。在该特定情况下,电弧根部以及因此电弧柱可以通过激光诱导的热点基本上被稳定和引导。

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