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Laser-induced breakdown spectroscopy of molten aluminum alloy

机译:熔融铝合金的激光诱导击穿光谱

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摘要

We have demonstrated that a fiber-optic laser-induced breakdown spectroscopy (LIBS) probe is suitable for measuring the concentration of minor constituents of a molten Al alloy in a laboratory furnace. For the first time to our knowledge we are able to record the LIBS spectra in several spectral regions of seven different molten Al alloy samples by inserting the LIBS probe inside the molten alloys, allowing us to obtain a ratio calibration curve for minor constituents (Cr, Mg, Zn, Cu, Si, etc.), using Fe as a reference element. A ratio calibration curve for Fe with a major element (Al) can also be obtained with which the concentration of Fe in the alloy can be determined. The effects of the surrounding atmosphere on the LIBS spectra of the molten alloy were investigated. Effects of focal length of the lens on the LIBS signals were also studied. LIBS spectra of a solid Al alloy recorded with the same LIBS probe were compared with the LIBS spectra of the molten alloy. Our results suggest that the LIBS probe is useful for monitoring the elemental composition of an Al melt in an industrial furnace at different depths and different positions inside the melt.
机译:我们已经证明,光纤激光诱导击穿光谱(LIBS)探头适用于测量实验室炉中熔融铝合金的微量成分的浓度。据我们所知,我们第一次能够通过将LIBS探针插入熔融合金内部,在七个不同的熔融铝合金样品的几个光谱区域中记录LIBS光谱,从而获得次要成分的比例校准曲线(Cr, Mg,Zn,Cu,Si等),并以Fe作为参考元素。还可以获得具有主要元素(Al)的Fe的比例校准曲线,通过该校准曲线可以确定合金中Fe的浓度。研究了周围气氛对熔融合金LIBS光谱的影响。还研究了透镜焦距对LIBS信号的影响。将用相同的LIBS探针记录的固态铝合金的LIBS光谱与熔融合金的LIBS光谱进行比较。我们的结果表明,LIBS探针可用于监测工业熔炉内不同深度和位置的Al熔体的元素组成。

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    《Applied optics》 |2003年第12期|共7页
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