M. Y. Lepilina, E. V. Yakubenko, T. N. Ermolaeva, V. B. Baranovskaya
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引用次数: 0
摘要
开发了一种锌铝镁合金 X 射线荧光光谱分析技术,可测定合金中的镁、铝、铅、硅、铜、锰、铁、镍含量。揭示了样品制备方法对校准图线性的影响。研究了用 X 射线荧光光谱法测定主要合金元素(Al、Mg)和杂质元素(Pb、Fe、Cu、Si、Mn、Ni)的条件。建议通过选择 X 射线辐射强度的阿尔法系数来校正矩阵效应,随后自动将函数转换为线性形式。测定相应范围内元素的校准图,即镁(0.00019 - 5.04%)、铝(0.0002 - 12.4%)、铅(0.0012 - 2.07%)、硅(0.0005 - 0.12%)、铜(0.0006 - 5.95%)、锰(0.0004 - 0.00524%)、铁(0.0009 - 0.41%)、镍(0.0009 - 0.27%),这些数据是使用标准参考样品和合金生产样品获得的,合金的化学成分之前是通过电感耦合等离子体原子发射光谱法(ICP-AES)测定的。通过分析标准样品和使用学生 t 检验对所获结果进行比较分析,确认了所开发方法的正确性。
Development of a technique for X-ray fluorescence analysis of zinc-aluminum-magnesium alloys
A technique for X-ray fluorescence spectral analysis of zinc-aluminum- magnesium alloys has been developed, which allows the determination of Mg, Al, Pb, Si, Cu, Mn, Fe, Ni content in the alloy. The effect of the sample preparation method on the linearity of calibration graphs is revealed. The conditions for determining the main alloying (Al, Mg) and impurity (Pb, Fe, Cu, Si, Mn, Ni) elements by X-ray fluorescence spectrometry were studied. It is proposed to use the correction of the matrix effect by selecting alpha coefficients for the intensity of X- ray radiation with subsequent automatic conversion of the function into a linear form. Calibration graphs for determination of the elements in the corresponding ranges, i.e., Mg (0.00019 – 5.04%), Al (0.0002 – 12.4%), Pb (0.0012 – 2.07%), Si (0.0005 – 0.12%), Cu (0.0006 – 5.95%), Mn (0.0004 – 0.00524%), Fe (0.0009 – 0.41%), Ni (0.0009 – 0.27%), were obtained using standard reference samples and production samples of the alloys, the chemical composition of which was previously determined by inductively coupled plasma atomic emission spectrometry (ICP-AES). The correctness of the developed methodology was confirmed by analysis of standard samples and comparative analysis of the obtained results using the Student’s t-test.