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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >HCM12A oxide layer investigation using scanning probe microscope
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HCM12A oxide layer investigation using scanning probe microscope

机译:使用扫描探针显微镜检查HCM12A氧化层

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The oxide layer on the 12Cr ferritic/martensitic steel, HCM12A, has been investigated using a scanning probe microscope (SPM). The oxide layer was formed in lead bismuth eutectic at 450-500 °C, during 5500 h. After EDX analyses, scanning probe microscope techniques were utilized for analyzing the oxide layers and the bulk material with a function of the potential and delayed phase measurements. Hitherto oxide formation mechanisms were studied from the points of view of the location of the original base metal surface, the path for oxygen travel, and Fe diffusion, in order to understand the stability of oxide layer, which is expected to permit the steel to have an endurable performance against lead-bismuth eutectic at high temperatures. The new findings in this research are that surface potential measurement detected the boundary between (FeCr) _3O _4 and Fe _3O _4, which is not found with topographic mode measurements. The spinel layer can be distinguished from the bulk area with lower surface potential profile, but near the boundary between the spinel and magnetite layers, the surface potential profile seems to be continuous except for the narrow path corresponding to the boundary line. The band structure penetrating the magnetite and spinel layers was found, which was not found in the topography also.
机译:使用扫描探针显微镜(SPM)对12Cr铁素体/马氏体钢HCM12A上的氧化物层进行了研究。在5500小时内于450-500°C的铅铋共晶中形成了氧化物层。在进行EDX分析之后,利用扫描探针显微镜技术来分析氧化物层和块状材料的电位和延迟相测量的功能。为了了解氧化物层的稳定性,从原始贱金属表面的位置,氧的行进路径和铁的扩散的角度研究了迄今为止的氧化物形成机理。在高温下对铅铋共晶具有持久的性能。这项研究的新发现是,表面电势测量可以检测到(FeCr)_3O _4和Fe _3O _4之间的边界,这在地形模式测量中是找不到的。尖晶石层可以与具有较低表面电势分布的本体区域区分开,但是在尖晶石和磁铁矿层之间的边界附近,除了对应于边界线的狭窄路径之外,表面电势分布似乎是连续的。发现了穿透磁铁矿和尖晶石层的能带结构,这在地形中也没有发现。

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