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Plume temperature diagnosis with the continuous spectrum and Wien's displacement law during high power fiber laser welding

机译:高功率光纤激光焊接过程中具有连续光谱和维恩位移定律的羽流温度诊断

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摘要

The laser-induced plume is an essential physical phenomenon during high power fiber laser welding. Its physical nature can be investigated by diagnosing its temperature. In order to overcome the lack of sufficient line spectra in the temperature diagnosis, the continuous spectrum method (based on the continuous spectrum and Wien's displacement law) is thus developed in this research. The optical spectra emitted by the plume or plasma were detected by using a SP-2500i spectrometer during bead-on-plate welding with an IPG YLS-6000 fiber laser or fiber laser-arc hybrid. The rationality of the continuous spectrum method was evaluated by comparing the plasma temperatures diagnosed by applying the continuous spectrum and line spectra. The results reveal that the continuous spectrum method used in temperature diagnosis is rational. When the line spectra cannot be detected due to an increase in detected height, the plume temperature can be still obtained by using the continuous spectrum method.
机译:激光感应羽流是高功率光纤激光焊接过程中必不可少的物理现象。可以通过诊断其温度来研究其物理性质。为了克服温度诊断中线谱不足的问题,本研究开发了基于连续谱和维恩位移定律的连续谱方法。在使用IPG YLS-6000光纤激光器或光纤激光电弧混合焊机进行盘焊过程中,使用SP-2500i分光计检测由羽状流或等离子体发出的光谱。通过比较应用连续光谱和线光谱法诊断出的等离子体温度,评估了连续光谱法的合理性。结果表明,用于温度诊断的连续光谱法是合理的。当由于检测到的高度增加而无法检测到线谱时,仍可以使用连续谱方法获得羽流温度。

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