首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Carbon detection in solid and liquid steel samples using ultraviolet long-short double pulse laser-induced breakdown spectroscopy
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Carbon detection in solid and liquid steel samples using ultraviolet long-short double pulse laser-induced breakdown spectroscopy

机译:使用紫外线脉冲激光诱导击穿光谱法在固体和液体钢样品中的碳检测

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摘要

An ultraviolet long-short double pulse laser-induced breakdown spectroscopy (UV LS-DP-LIBS) system is employed to detect the carbon element in solid and liquid steel samples. The important issues for the industrial application of LIBS are investigated in this work, which include the carbon excitation in steel, the influences of CO2, the quantitative analysis and the escape phenomenon of carbon. It is found that the CO2 in air can also be involved to the plasma generation and emits the carbon specific spectral lines. The strong emission line at C I 193.091 nm can be observed when the sample is placed in the gas atmosphere with CO2. It is also found that the carbon signal generated from liquid steel is continuously decreasing after the sample is molten. The experimental investigation demonstrates that the influences of O-2 cause the carbon escape phenomenon in liquid steel, which should be fully considered for the industrial application of LIBS.
机译:采用紫外线长短脉冲激光诱导的击穿光谱(UV LS-DP-LIBS)系统来检测固体和液钢样品中的碳元件。 在这项工作中调查了LIBS工业应用的重要问题,包括钢中的碳激发,CO2的影响,定量分析和碳的逃逸现象。 发现空气中的CO 2也可以参与等离子体产生并发出碳特异性光谱线。 当样品与CO 2中置于气体气氛中时,可以观察到C i 193.091 nm的强发射线。 还发现,在样品熔融之后,从液钢产生的碳信号在熔融之后连续降低。 实验研究表明,O-2的影响导致液钢中的碳逸出现象,这应该完全考虑采用LIBS的工业应用。

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