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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Determination of the alloying content in the matrix of Zr alloys using synchrotron radiation microprobe X-ray fluorescence
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Determination of the alloying content in the matrix of Zr alloys using synchrotron radiation microprobe X-ray fluorescence

机译:同步辐射微探针X射线荧光法测定Zr合金基体中的合金含量

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摘要

The alloying element content in the alpha-Zr matrix of Zr alloys was studied using synchrotron radiation microprobe X-ray fluorescence, coupled with Monte Carlo simulation of the fluorescence process for quantification of the concentrations. The agreement between the measured values and the bulk concentrations of the alloy standards, as measured by the overall fit of the full fluorescence spectrum, was excellent. We measured the concentration of insoluble alloying elements in the matrix of Zircaloy-4 previously annealed to 705 degreesC for 125 h (corresponding to a cumulative annealing parameter (CAP) of 2.1 x 10(-16) h, CAP = Sigma(i) t(i) exp(-Q/RTi) where t(i) is the time (hours) spent at temperature T-i (K) and Q/R = 40000 K) and in the matrix of a ZrSnNbFe alloy with a composition similar to ZIRLO(TM), but annealed at 710 degreesC for 92 h. The matrix concentrations of alloying elements were found to be, Fe = 290 wt. ppm, Cr = 270 wt. ppm in Zircaloy-4 and Fe = 250 wt. ppm in the ZrSnNbFe alloy. These results are discussed in light of other experimental determinations of alloying element concentrations in the literature. (C) 2003 Elsevier B.V. All rights reserved. [References: 37]
机译:使用同步加速器辐射微探针X射线荧光技术,结合荧光过程的蒙特卡洛模拟法,对Zr合金的α-Zr基质中的合金元素含量进行了定量分析。通过全荧光光谱的整体拟合,测量值与合金标准品的总浓度之间的一致性非常好。我们测量了Zircaloy-4预先退火至705摄氏度,持续125小时的基质中不溶性合金元素的浓度(对应于2.1 x 10(-16)h的累积退火参数(CAP),CAP = Sigma(i)t (i)exp(-Q / RTi),其中t(i)是在温度Ti(K)和Q / R = 40000 K时以及在成分类似于ZIRLO的ZrSnNbFe合金基体中花费的时间(小时) (TM),但在710摄氏度下退火92小时。发现合金元素的基质浓度为Fe = 290 wt.。 ppm,Cr = 270 wt。 Zircaloy-4中的ppm和Fe = 250 wt。 ZrSnNbFe合金中的ppm。根据文献中合金元素浓度的其他实验测定,讨论了这些结果。 (C)2003 Elsevier B.V.保留所有权利。 [参考:37]

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