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Analysis of the hybrid pulsed MAG-YAG laser plasma with synchronization of multiple signals

机译:具有多个信号同步的混合脉冲MAG-YAG激光等离子体分析

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摘要

In this paper, a synchronization system is developed for collecting multiple signals of arc plasma which is generated by the hybrid pulsed metal active gas (MAG)-YAG laser welding process. The synchronization system can collect spectra of the plasma, arc voltage, welding current, and high speed video simultaneously. Because the hybrid arc plasma fluctuates with the variation of pulsed welding parameters, acquiring the transient signals is very important for analysis of the coupling effect. With the application of synchronization signals, the transient state of the hybrid plasma can be detected and analyzed. The results show that the interaction between laser beam and welding arc is quite different for different stage of the welding parameter. In the background level of welding current, the laser beam acts directly on the front edge of welding pool, which obviously decreases the effect of diffraction by the solid weld plate. The arc plasma is attracted by the laser and shifts to the laser beam. In the pulse level of welding current, the laser beam acts on the arc plasma rather than directly on the welding pool. The absorption of laser energy by the arc plasma is dominant.
机译:本文开发了一种同步系统,用于收集由混合脉冲金属活性气体(MAG)-YAG激光焊接工艺产生的电弧等离子体的多个信号。同步系统可以同时收集等离子体,电弧电压,焊接电流和高速视频的光谱。由于混合电弧等离子体随脉冲焊接参数的变化而波动,因此获取瞬态信号对于分析耦合效果非常重要。通过同步信号的应用,可以检测和分析混合等离子体的瞬态。结果表明,在不同的焊接参数阶段,激光束与焊接电弧之间的相互作用存在很大差异。在焊接电流的背景水平下,激光束直接作用于焊接池的前边缘,这明显降低了实心焊接板的衍射效应。电弧等离子体被激光吸引并转移到激光束上。在焊接电流的脉冲水平上,激光束作用在电弧等离子体上,而不是直接作用在焊接池上。电弧等离子体对激光能量的吸收占主导。

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  • 来源
    《Journal of Laser Applications》 |2010年第3期|p.106-115|共10页
  • 作者单位

    College of Material Science and Engineering, North University of China, Taiyuan 030051, China;

    rnSchool of Material Science and Engineering, Tianjin University, Tianjin 300072, China;

    rnSchool of Material Science and Engineering, Tianjin University, Tianjin 300072, China;

    rnSchool of Material Science and Engineering, Tianjin University, Tianjin 300072, China;

    rnHarbin Welding Institute, Harbin 150080, China;

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