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高温合金激光焊接过程中的原位激光诱导击穿光谱测量

In situ laser-induced breakdown spectroscopy measurements during laser welding of superalloy.

作者信息

Lednev V N, Sdvizhenskii P A, Grishin M Ya, Stavertiy A Ya, Tretyakov R S, Asyutin R D, Fedorov A N, Pershin S M

出版信息

Appl Opt. 2021 Feb 10;60(5):1144-1149. doi: 10.1364/AO.411359.

Abstract

Laser-induced breakdown spectroscopy (LIBS) has been utilized for in situ diagnostics of the laser welding process. The influence of different weld spot areas (melt pool, solid weld) on LIBS signals and plasma properties has been studied in detail. Liquid metal sampling and high target surface temperature of the melt enhance LIBS plasma intensity and increase plasma temperature. The influence of laser welding process parameters on LIBS measurements has been studied in order to differentiate optimal and defective laser welding. In case of defective laser welding, the melt pool was intensively boiling, so we have observed greater LIBS signals but poor reproducibility. For the first time, the LIBS technique was demonstrated to detect defective laser welding during in situ measurements utilizing atomic and ionic line comparison by paired sample t-test hypotheses testing.

摘要

激光诱导击穿光谱法(LIBS)已被用于激光焊接过程的原位诊断。详细研究了不同焊接点区域(熔池、固态焊缝)对LIBS信号和等离子体特性的影响。液态金属采样以及熔池较高的靶表面温度增强了LIBS等离子体强度并提高了等离子体温度。研究了激光焊接工艺参数对LIBS测量的影响,以区分优质和有缺陷的激光焊接。在有缺陷的激光焊接情况下,熔池剧烈沸腾,因此我们观察到更大的LIBS信号,但重现性较差。首次证明LIBS技术在原位测量过程中利用配对样本t检验假设检验通过原子和离子谱线比较来检测有缺陷的激光焊接。

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