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Analysis of Optical and Acoustic Emissions During CO_2 Laser Welding of a Stainless Steel

机译:不锈钢CO_2激光焊接过程中的光声发射分析

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We have measured optical and acoustic emissions from a CO_2 laser welding of 304 stainless steel to monitor the welding process. The optical emission of Fe atom was detected by a spectrometer with an optical fiber. The acoustic emission was collected by a microphone. The bead on plate welding was performed with a 5 kW CO_2 laser with a 245 mm parabolic mirror and its power was changed from 2 to 5 kW.Amplitude of both the optical and the acoustic emissions fluctuated quickly. There were some peaks in fast Fourier transform (FFT) power spectra of the signals. The major peaks of the acoustic emission appeared around 2.8 kHz when the welding was keyhole-type. When the welding was heat conduction-type, the frequency peaks above 5 kHz in the acoustic emission became larger in comparison to that around 2.8 kHz. The frequency distribution of the acoustic emission changed corresponding to the welding types. Similar dependency of the frequency spectrum on the welding types was observed in the optical signal. This correlation is reproducible and would be useful for online monitoring and process control.
机译:我们已经测量了304不锈钢的CO_2激光焊接产生的光和声发射,以监控焊接过程。 Fe原子的光发射通过具有光纤的分光计进行检测。声音发射是通过麦克风收集的。用5 kW CO_2激光和245 mm抛物面镜进行平板焊接时的焊珠,其功率从2 kW更改为5 kW。 光发射和声发射的幅度都快速波动。信号的快速傅里叶变换(FFT)功率谱中有一些峰值。当焊接为锁孔型焊接时,声发射的主要峰值出现在2.8 kHz附近。当焊接为热传导型时,与2.8kHz附近相比,声发射中高于5kHz的频率峰变大。声发射的频率分布根据焊接类型而变化。在光信号中观察到频谱对焊接类型的相似依赖性。这种相关性是可重现的,对于在线监视和过程控制很有用。

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