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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Semi-quantitative analysis of binary alloys using laser-induced breakdown spectroscopy and a new calibration approach based on linear correlation
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Semi-quantitative analysis of binary alloys using laser-induced breakdown spectroscopy and a new calibration approach based on linear correlation

机译:基于二元合金的激光诱导击穿光谱法半定量分析和基于线性相关的新校正方法

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摘要

A new calibration approach to analyze binary solid samples at the percentage level is proposed, and its application to laser-induced breakdown spectroscopy (LIBS) is presented. The method is based on the observed dependence of the linear correlation coefficient on the analyte concentration in a binary sample. The linear correlation coefficient is calculated between spectra of a range of certified standards and the spectrum of a reference sample (the analyte in the form of a pure metal), and the resulting curve is used as a calibration curve. It was found that a quadratic function could be adequately used to fit the calibration points. The first part of this paper characterizes the proposed calibration method providing mathematical and simulational data, and also describes a possibility to extend it to multicomponent samples. In the second part, the method is successfully applied to the LIBS analysis of Cu in brass samples as well as Al, Si and Cu in aluminum alloys. The new method was found to give rise to results accurate to 1-5% for major components, and usually outperformed conventional calibration in terms of both precision and accuracy.
机译:提出了一种新的以百分比形式分析二元固体样品的校准方法,并提出了其在激光诱导击穿光谱法(LIBS)中的应用。该方法基于观察到的线性相关系数对二元样品中分析物浓度的依赖性。在一系列认证标准品的光谱和参考样品(纯金属形式的分析物)的光谱之间计算线性相关系数,并将所得曲线用作校准曲线。已经发现,可以充分使用二次函数来拟合校准点。本文的第一部分描述了所提出的提供数学和模拟数据的校准方法,并描述了将其扩展到多组分样品的可能性。在第二部分中,该方法成功地应用于了黄铜样品中的Cu以及铝合金中的Al,Si和Cu的LIBS分析。发现新方法对主要部件的测量结果精确到1%至5%,并且在精确度和准确性方面通常都优于常规校准。

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