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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >A detailed TEM and SEM study of Ni-base alloys oxide scales formed in primary conditions of pressurized water reactor
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A detailed TEM and SEM study of Ni-base alloys oxide scales formed in primary conditions of pressurized water reactor

机译:压水反应堆主要条件下形成的镍基合金氧化皮的详细TEM和SEM研究

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摘要

The oxide film formed on nickel-based alloys in pressurized water reactors (PWR) primary coolant conditions (325 °C, aqueous media) is very thin, in the range of 1-100 nm thick, depending on the surface state and on the corrosion test duration. The nature and the structure of this scale have been investigated by Transmission Electron Microscopy (TEM) and Scanning Electron Microscopy (SEM). TEM observations revealed an oxide layer divided in two parts. The internal layer was mainly composed of a continuous spinel layer, identified as a mixed iron and nickel chromite (Ni_((1-x)_)Fe_xCr_2O_4). Moreover, nodules of Cr_2O_3, with a size about 5 nm, were present at the interface between this spinel and the alloy. No chromium depletion was observed in the alloy, at the alloy/oxide interface. The external layer is composed of large crystallites corresponding to a spinel structure rich in iron (Ni _((1-z))Fe_((2+z)_)O_4) resulting from precipitation phenomena. SEM and TEM observations showed a link between the nucleation and/or the growth of crystallites of nickel ferrite and the crystallographic orientation of the substrate. A link between the presence of surface defects and the nucleation of the crystallites was also underlined by SEM observations. Partially hydrated nickel hydroxide, was also observed by TEM in the external scale. Based on these results, some considerations about the mechanism of formation of this oxide layer are discussed.
机译:在压水反应堆(PWR)初级冷却剂条件下(325°C,水性介质)在镍基合金上形成的氧化膜非常薄,厚度范围为1-100 nm,具体取决于表面状态和腐蚀情况测试时间。该标尺的性质和结构已通过透射电子显微镜(TEM)和扫描电子显微镜(SEM)进行了研究。 TEM观察显示氧化层分为两部分。内层主要由连续的尖晶石层组成,被识别为铁和亚铬酸镍的混合体(Ni _((1-x)_)Fe_xCr_2O_4)。而且,在该尖晶石和合金之间的界面处存在约5nm的大小的Cr_2O_3的结节。在合金/氧化物界面处的合金中未观察到铬耗竭。外层由大的微晶组成,这些微晶对应于由沉淀现象产生的富含铁(Ni _((1-z))Fe _((2 + z)_)O_4的尖晶石结构。 SEM和TEM观察表明,铁素体镍微晶的成核和/或生长与基底的晶体学取向之间存在联系。 SEM观察结果也强调了表面缺陷的存在与微晶核化之间的联系。还通过TEM在外部尺度上观察到部分水合的氢氧化镍。基于这些结果,讨论了关于该氧化物层的形成机理的一些考虑。

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