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Quantitative elemental analysis of steel using calibration-free laser-induced breakdown spectroscopy

机译:使用无标定激光诱导击穿光谱法对钢进行定量元素分析

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We report the quantitative elemental analysis of a steel sample using calibration-free laser-induced breakdown spectroscopy (CF-LIBS). A Q-switched Nd:YAG laser (532 nm wavelength) is used to produce a plasma by focusing it onto a steel sample in air at atmospheric pressure. The time-resolved spectra from atomic and ionic emission lines of the steel elements are recorded by an echelle grating spectrograph coupled with a gated intensified CCD camera and are used for the plasma characterization and quantitative analysis of the sample. The time delay at which the plasma is in local thermodynamic equilibrium as well as optically thin, necessary for elemental analysis, is deduced. An algorithm for the CF-LIBS relating the experimentally measured spectral intensity values with the basic physics of the plasma is developed and used for the determination of Fe, Cr, Ni, Mg, and Si concentrations in the steel sample. The analytical results obtained from the CF-LIBS technique agree well with the certified values of the elements in the sample, with relative uncertainties of less than 5percent.
机译:我们报告使用无标定激光诱导击穿光谱法(CF-LIBS)对钢样品进行定量元素分析。使用调Q的Nd:YAG激光(波长532 nm),通过将其聚焦到大气中的空气中的钢样品上来产生等离子体。来自钢元素的原子和离子发射谱线的时间分辨光谱是通过结合有门控增强型CCD相机的echelle光栅光谱仪记录的,用于样品的等离子体表征和定量分析。推导出了等离子体处于局部热力学平衡以及光学上稀薄的时间延迟,这是元素分析所必需的。开发了一种用于CF-LIBS的算法,该算法将实验测量的光谱强度值与等离子体的基本物理学联系起来,并用于确定钢样品中的Fe,Cr,Ni,Mg和Si浓度。从CF-LIBS技术获得的分析结果与样品中元素的认证值非常吻合,相对不确定度小于5%。

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