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A surface science study of the initial stages of hydrogen corrosion on uranium metal and the role played by grain microstructure

机译:铀金属上氢腐蚀初始阶段的表面科学研究以及晶粒微结构的作用

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Controlled formation of UH_3 on uranium metal surfaces was induced by a precisely limited uptake of hydrogen at 250 C and 320 C with 500 mbar H_2 pressure. The hydride (UH_3) growth sites on the sample surfaces were studied using focused ion beam (FIB) milling with high resolution secondary electron imaging. Electron backscatter diffraction (EBSD) analysis was also used to examine grain orientation of the metal in the region of the corrosion sites. Results of the analysis indicated that the location of hydride sites was predominantly found to be associated with grain boundaries at the metal surface. In addition, FIB cross-sectioning of multiple hydride sites indicates the observed morphology of very small hydride growths to be consistent with nucleation at, and not beneath, the oxide-metal interface.
机译:通过在250℃和320℃,500 mbar H_2压力下精确限制氢气的吸收来诱导铀金属表面上UH_3的受控形成。使用聚焦离子束(FIB)铣削和高分辨率二次电子成像技术研究了样品表面上的氢化物(UH_3)生长部位。电子背散射衍射(EBSD)分析还用于检查腐蚀部位区域内金属的晶粒取向。分析结果表明,氢化物位点的位置主要与金属表面的晶界有关。另外,多个氢化物位点的FIB横截面表明观察到的非常小的氢化物生长形态与氧化物-金属界面处而不是下方的成核作用相一致。

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