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首页> 外文期刊>Corrosion science >Irradiation accelerated fluoride molten salt corrosion of nickel-based UNS N10003 alloy revealed by X-ray absorption fine structure
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Irradiation accelerated fluoride molten salt corrosion of nickel-based UNS N10003 alloy revealed by X-ray absorption fine structure

机译:X射线吸收细结构显示镍基UN10003合金的辐照加速氟化物熔盐腐蚀

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Helium ion irradiation accelerating molten salt corrosion of nickel-based UNS N10003 alloy was noted for severely dissolving of chromium element. X-ray absorption fine structure was applied to investigate irradiation effect on chromium microchemistry. In molten salt environment, neighbor atoms around chromium element are significantly reduced in the irradiated & corroded alloy, compared with those in the corroded alloy. Specially, the Cr-O and Cr3+ were detected, indicating the formation of Cr(III)-containing oxides. It can be ascribed to irradiation induced the diffusion of the electrons around the Cr atoms and more reactive of Cr, which revealed irradiation accelerating corrosion at atomic scale.
机译:氦离子照射加速镍的非N10003合金的熔盐腐蚀,用于严重溶解铬元素。 X射线吸收细结构用于研究铬微化学的辐照效应。在熔盐环境中,与腐蚀合金中的那些相比,在辐照和腐蚀的合金中,铬元件周围的邻居原子显着降低。特别地,检测CR-O和CR3 +,表明CR(III)氧化物的形成。它可以归因于照射诱导电子围绕Cr原子和克隆的更具反应的电子的扩散,这揭示了原子尺度的照射加速腐蚀。

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