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Quantitative analysis of multi-elements in steel samples by laser-induced breakdown spectroscopy

机译:激光诱导击穿光谱法定量分析钢样中的多种元素

摘要

Through a Nd:YAG pulse laser of 1064nm wavelength, a multichannel grating spectrometer, and seven CCD detectors, the plasma emission spectrum of the 200 - 980nm wavelength rang were simultaneously observed. First, we studied the influences of some factors like laser energy and measurement time delays on emission intensity of plasma. By experiments, we found that the unusual phenomenon that the emission intensity of plasma is possibly stronger when laser energy is smaller for steel samples. However, this stronger intensity obtained under smaller laser energy is not suitable to quantitative analysis because of poorer repetition. Second, we determined the optimal experimental parameters and quantitatively analyzed the concentrations of the element Mn, Ni, Cr, V, Ti and Cu in some steel samples under the optimal experimental parameters. The calibration curves of these elements were built, and good linearity was obtained. The average relative errors of the quantitative results of these elements are between 13.31% and 4.54%. Consequently, LIBS can be used for quantitative analysis for steel samples; however, the accuracy of the quantitative results still needs to be improved.
机译:通过波长为1064nm的Nd:YAG脉冲激光,多通道光栅光谱仪和七个CCD检测器,同时观察到200-980nm波长的等离子体发射光谱。首先,我们研究了诸如激光能量和测量时间延迟等因素对等离子体发射强度的影响。通过实验,我们发现钢样品的激光能量较小时,等离子体的发射强度可能会变强的异常现象。但是,由于重复性较差,因此在较小的激光能量下获得的较强强度不适合用于定量分析。其次,确定最佳实验参数,并在最佳实验参数下定量分析了一些钢样中锰,镍,铬,钒,钛和铜的含量。建立了这些元件的校准曲线,并获得了良好的线性。这些元素定量结果的平均相对误差在13.31%至4.54%之间。因此,LIBS可用于钢样品的定量分析。但是,定量结果的准确性仍需提高。

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