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首页> 外文期刊>Journal of Laser Applications >Autocorrelation analysis of plasma plume light emissions in deep penetration laser welding of steel
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Autocorrelation analysis of plasma plume light emissions in deep penetration laser welding of steel

机译:深层渗透激光焊接等离子体羽流辐射的自相关分析

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The light emissions of the plasma plume in the deep penetration laser welding of metals typically have the character of irregular short-time pulses. Their nature indicates that the size of the plume significantly fluctuates and the plasma flows out of the keyhole in the form of short bursts rather than a continuous flow. In this paper, the authors study the plasma plume light emissions using an autocorrelation analysis. The authors show that it is an efficient tool for the detection of the plasma bursts period which is typically in the order of milliseconds. The authors compare the autocorrela- tion characteristics and the geometry of the welds made on a 2kW ytterbium-doped yttrium aluminium garnet (Yb:YAG) fiber laser welding machine for the X5CrNi 18-10 stainless steel and the S235JR carbon steel. The welding parameters settings is varied over a range of laser power (1–2kW) and welding speed (10–30mm/s) usually used in industry. As a result, the authors identify a linear dependence between the plasma bursts period and the weld depth.
机译:深渗透激光焊接的等离子体羽流的光排放通常具有不规则的短时脉冲的特征。他们的性质表明,羽毛的尺寸明显波动,等离子体以短脉冲的形式而不是连续流动的形式流出钥匙孔。在本文中,作者使用自相关分析研究了等离子体羽毛光排放。作者表明它是检测通常按毫秒顺序的等离子体突发周期的有效工具。作者比较了在X5CRNI 18-10不锈钢和S235JR碳钢的2KW YTTerbium掺杂的钇铝石榴石(YB:YAG)光纤激光焊接机上进行的自体化特性和焊缝的几何形状。焊接参数设置在一系列激光功率(1-2KW)和通常用于工业中使用的焊接速度(10-30mm / s)。结果,作者识别等离子体突发周期和焊接深度之间的线性依赖性。

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