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首页> 外文期刊>Radiation Physics and Chemistry >Alloying effect on K shell X-ray fluorescence cross-sections and intensity ratios of Cu and Sn in Cu1Sn1-x alloys using the 59.5 keV gamma rays
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Alloying effect on K shell X-ray fluorescence cross-sections and intensity ratios of Cu and Sn in Cu1Sn1-x alloys using the 59.5 keV gamma rays

机译:59.5 keVγ射线对Cu1Sn1-x合金中K壳X射线荧光截面和Cu和Sn强度比的合金化作用

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摘要

K-beta/K-alpha, intensity ratios and sigma K-alpha,K-beta production cross-sections of Cu and Sn were measured in pure metals and in different alloys which have different compositions (CuxSn1-x x=0.48, 0.41, 0.14 and 0.06). The samples were excited by 59.5 keV gamma-rays from Am-241 annular radioactive source. K X-rays emitted by samples were counted by an Ultra-LEGe detector with a resolution of 150 eV at 5.9 keV. Comparison of the sigma(K beta) production cross-sections and K beta/K alpha X-ray intensity ratio values for Cu and Sn with the theoretical and semi-empirical calculations indicates that they are in the inverse direction with concentration of constituent element in the alloys. The results show that variations in these parameters can be explained with the charge transfer process between the elements which constitute the alloys. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在纯金属和具有不同成分的不同合金中测量Cu和Sn的K-β/K-α,强度比和σK-α,K-β生产横截面(CuxSn1-x x = 0.48、0.41, 0.14和0.06)。来自Am-241环形放射源的59.5 keVγ射线激发了样品。用Ultra-LEGe检测器对样品发出的K X射线进行计数,分辨率为5.9 keV,分辨率为150 eV。铜和锡的σ(K beta)生产截面和K beta / K alpha X射线强度比值与理论和半经验计算的比较表明,它们与元素中的元素浓度成反比。合金。结果表明,这些参数的变化可以用构成合金的元素之间的电荷转移过程来解释。 (C)2016 Elsevier Ltd.保留所有权利。

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