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Surface analysis by GXRD and XPS in the austenitic steel DIN by nickel ions

机译:GXRD和XPS在奥氏体离子中的GXRD和XPS的表面分析

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摘要

The composition changes in the close to surface of the austenitic stainless steel DIN 1.4981 irradiated at high doses. Theoretical simulations using the SRIM-2013 program show that the damage due to Nickel cation [Ni ] ions irradiation of 3.66 MeV extends to up 2 μm deep in the steel under study. Then the applications of Grazing incidence X-ray Diffraction (GXRD) and X-ray Photoelectron Spectroscopy (XPS), Gallium cation [Ga ] ions sputtering assisted, were necessary to detect respectively, any compositional changes with the depth. GXRD differences were recorded in the intensity and it's Full Width at Half Maximum (FWHM), of the austenite (111) diffraction peak, at different depths in the Irradiate Zone (IZ). Through XPS was found that Nickel [Ni], Niobium [Nb], and Manganese [Mn] were depleted it is important to highlight Chromium [Cr], and Molybdenum [Mo] were improved at the irradiated surface; such behavior was contrary to the element migration under irradiation reported for austenitic stainless steels irradiated at low doses.
机译:该组成在高剂量照射的奥氏体不锈钢DIN 1.4981的近表面上变化。使用SRIM-2013程序的理论模拟表明,镍阳离子损伤[Ni]离子的辐照为3.66meV,在研究中钢膨胀率为2μm。然后,需要分别检测凝血性X射线衍射(GXRD)和X射线光电子谱(XPS),镓阳离子[Ga]离子溅射辅助的应用,以检测任何组成变化。在强度下记录GXRD差异,并且它在奥氏体(111)衍射峰值的半个最大(FWHM)中的全宽度,在照射区(IZ)中的不同深度处。通过XPS发现镍[Ni],铌[Nb]和锰[Mn]耗尽,重要地突出铬[Cr],钼[Mo]在辐照表面上得到改善;这种行为与在低剂量照射的奥氏体不锈钢报告的辐照下的元素迁移相反。

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