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Oxidation Characteristics of Two FeCrAl Alloys in Air and Steam from 800A degrees C to 1300A degrees C

机译:从800A的空气和蒸汽中的两个菌合金的氧化特性从800A的C到1300A的C到1300A C.

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Iron-chromium-aluminum (FeCrAl) alloys are being investigated as cladding material for urania nuclear fuel in light water power reactors. One extraordinary attribute of the FeCrAl alloys is their resistance to attack by air and steam up to their melting point. It was of interest to study the kinetics of oxidation of FeCrAl from 800A degrees C to 1300A degrees C in air and in steam to determine how the oxides evolve to provide protection to the alloys. The two investigated alloys were APMT (Fe-21Cr-5Al-3Mo) and C26M (Fe-12Cr-6Al-2Mo). Results show that both alloys had similar oxidation kinetics despite their different chemical compositions. For the testing times, the oxidation rate was higher in air than in steam at the higher temperatures (1100-1300A degrees C) and higher in steam than in air at the lower temperatures (800-1100A degrees C). In the lower temperature range, the surface oxide consisted of two layers, an internal layer rich in aluminum and an external layer containing Al, Cr, and Fe. In the higher temperature range, the oxide was a single layer of alumina (no Cr, no Fe, no Mo).
机译:正在研究铁 - 铬 - 铝(Fecral)合金作为乌拉尼亚核燃料中的乌兰核燃料包层材料。群体合金的一个特殊属性是它们对空气攻击的抵抗力,蒸汽达到它们的熔点。它感兴趣地研究从800A℃-1300A的空气和蒸汽中释放的血r氧化动力学,以确定氧化物如何发展以向合金提供保护。两种研究的合金是APMT(Fe-21Cr-5Al-3MO)和C26M(Fe-12Cr-6Al-2MO)。结果表明,尽管有不同的化学组成,但两种合金都具有相似的氧化动力学。对于测试时间,空气中的氧化速率高于较高温度(1100-1300A℃)的蒸汽中的蒸汽,并且蒸汽在较低温度下的空气中(800-1100A℃)。在较低温度范围内,表面氧化物由两层组成,富含铝的内层和含有Al,Cr和Fe的外层。在较高温度范围内,氧化物是单层氧化铝(NO Cr,No Fe,No Mo)。

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