材料科学
原位
钨极气体保护焊
焊接
过程(计算)
等离子体
激光器
激光束焊接
信号(编程语言)
数据采集
冶金
光学
电弧焊
计算机科学
气象学
量子力学
操作系统
程序设计语言
物理
作者
Ran Ma,Yu Jiang,Chao Liu,Shun Xie,Zi Wang,Xiaohui Zou,Baoqi Zhu,Jianglin Zou
摘要
The behavior of laser-TIG hybrid welding plasma is closely related to the welding process. In order to obtain the behavior of plasma more quickly, this paper proposes a new method for in situ monitoring of plasma by acquiring the line spectrum of plasma radiation. By applying narrow-band filtering, the time-varying intensity profiles of specific Mg-I spectral lines (470, 518, and 552 nm) in the plasma radiation generated during the hybrid welding of 5083 aluminum alloy are selectively obtained. These optical signals are then denoised using wavelet packet transform and Savitzky–Golay smoothing filters. Further analysis is performed using empirical mode decomposition, fast Fourier transform, and Hilbert transform to extract comprehensive time, frequency, and time–frequency features. The results demonstrate that, compared to full-spectrum acquisition, the selectively captured line spectra exhibit more pronounced variations in signal intensity and frequency, making them more representative of plasma behavior. Among them, the Mg-I 518 nm line—with the highest intensity—exhibits the strongest sensitivity to changes in plasma dynamics. This targeted spectral approach significantly enhances the accuracy and responsiveness of real-time monitoring. The findings provide a promising strategy for the intelligent in situ monitoring of laser-TIG hybrid welding processes, contributing to improved weld quality and process stability.
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