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Oscillations of Keyhole Pressure and Plasma Radiation During cw CO_2 Laser Welding

机译:CW CO_2激光焊接期间锁孔压力和等离子体辐射的振动

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The analysis of the fluctuations of pressure and plasma radiation observed during welding with a cw CO_2 laser is presented. Welding was done with a continuous wave CO_2 laser, Photon Sources VFA 2500, operating at the power of 1.75-2 kW. The welded materials were mild and stainless steel sheets 0.8-2 mm thick. Shielding gas was argon or helium. Plasma fluctuations were registered in monochromatic radiation with the use of a monochromator and hotomultiplier while the pressure variations - with a microphone i nthe frequency range of 20-2x1-~4 Hz. The results show that the optical and acoustic signals emitted during the welding process can be used for process monitoring. The most promising method is a frequency analysis based on the Fourier techniques. The Fourier spectra (power spectrum densities -PSD) of pressure waves and plasma emission change with the welding condition and hence contain information about the process of welding. Power spectra of both signals and their coherence are studied in dependence on the welding conditions. Generally two intrinsic frequency peaks are always present but the relative peak amplitude, exact frequency and width depend on welding conditions. In the case of mild steel 0.8 mm thick when helium is used as the shielding gas these peaks correspond to the frequencies of approx 1.3 kHz and approx 3.7 kHz in the PSD of both signals, optical and acoustic. The clear dependence of the measured signals on process parameters shows that they can be used to find the best welding conditions.
机译:用连续波激光CO_2焊接被呈现过程中观察到的压力和等离子体辐射波动的分析。焊接用连续波激光CO_2,光子源VFA 2500,在1.75-2千瓦的功率操作完成。焊接材料是低碳钢和不锈钢片材厚0.8-2毫米。保护气体为氩气或氦气。等离子体波动被登记在与使用单色仪和hotomultiplier而压力变化的单色辐射 - 具有麦克风我20-2x1-〜4赫兹的n此频率范围。结果表明,在焊接过程期间发出的光与声频信号可以被用于过程监测。最有前途的方法是基于傅立叶技术进行频率分析。压力波和与焊接条件等离子体发射的变化,并因此的傅立叶频谱(功率谱密度-PSD)包含关于焊接的过程的信息。这两个信号和它们的相干性的功率谱进行了研究,在焊接条件的依赖性。通常为两个固有频率峰值总是存在的,但相对峰振幅,精确的频率和宽度取决于焊接条件。在软钢0.8毫米的情况下厚时氦用作这些峰对应于大约1.3千赫的频率的保护气体和在这两个信号,光学和声学的PSD大约3.7千赫。将澄清的工艺参数示出了测得的信号的依赖性,它们可以被用来找到最好的焊接条件。

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