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首页> 外文期刊>Journal of nuclear engineering and radiation science >Effect of Steam Temperature and Pressure on the Oxidation of Potential Coating Alloy FeCrAI for Supercritical Water-Cooled Reactor Application
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Effect of Steam Temperature and Pressure on the Oxidation of Potential Coating Alloy FeCrAI for Supercritical Water-Cooled Reactor Application

机译:蒸汽温度和压力对超临界水冷反应器应用的潜在涂料合金氧化的影响

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MCrAl (M = Fe, Ni, or Co) alloys have exceptional corrosion and oxidation resistance and can be used as both oxidation resistant structural materials and coatings. As coatings, they protect high temperature steels or Ni based alloys by forming a dense alumina layer on the surface and thus impeding further oxidation. In order to assess its potential usage as an overlay coating on components used in supercritical water-cooled nuclear reactors (SCWRs), an Fe-2 3Cr-5Al alloy in the form of wire was tested under two different super-heated steam (SHS) conditions (625°C and 800°C) and also in supercritical water (SCW) (625°C and 26 MPa), for 500 h. The corrosion behavior of samples was assessed by measuring the weight change per unit surface area and by examining the surface, cross-sectional microstructure and the phase compositions using scanning electron microscopy (SEM) and X-ray diffraction (XRD). The tested samples showed different oxidation behavior after exposure to these three conditions. SEM and XRD results showed that FeCrAl has the ability to form protective Al- and Cr-containing oxide(s) under all three conditions. Based on the findings, it is concluded that the oxidation behavior of Fe-23Cr-5Al is highly influenced by pressure and temperature within the range of testing conditions. SHS exposure at low temperature led to greater weight gain while that in SCW resulted in weight loss. Overall, its performance is better under SHS conditions compared to CoCrWC S16 but worse under the SCW condition.
机译:Mcral(M = Fe,Ni或Co)合金具有出色的腐蚀和抗氧化性,并且可以用作抗氧化结构材料和涂料。作为涂层,它们通过在表面上形成致密的氧化铝层来保护高温钢或Ni基合金,从而妨碍进一步氧化。为了评估其作为超临界水冷核反应堆(SCWRS)中使用的部件的覆盖涂层的潜在用途,在两种不同的超加热蒸汽(SHS)下测试焊丝形式的Fe-2 3Cr-5Al合金条件(625°C和800°C),也是超临界水(SCW)(625°C和26MPa),500小时。通过测量每单位面积的重量变化和使用扫描电子显微镜(SEM)和X射线衍射(XRD)来检查样品的重量变化并通过检查表面,横截面微观结构和相组合物来评估样品的腐蚀行为。在暴露于这三种条件后,测试样品显示出不同的氧化行为。 SEM和XRD结果表明,群体在所有三种条件下有能力在所有三种条件下形成含有保护的AL和Cr氧化物。基于该发现,得出结论,Fe-23Cr-5Al的氧化行为受到测试条件范围内的压力和温度的高度影响。低温下的曝光导致体重增加较大,而SCW中的重量增加导致体重减轻。总体而言,与COCRWC S16相比,其性能在SHS条件下更好,但在SCW条件下更糟糕。

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