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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Air oxidation of Zircaloy-4, M5? and ZIRLO? cladding alloys at high temperatures
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Air oxidation of Zircaloy-4, M5? and ZIRLO? cladding alloys at high temperatures

机译:Zircaloy-4,M5的空气氧化?和ZIRLO?高温熔覆合金

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The paper presents the results of isothermal and transient oxidation experiments of the advanced cladding alloys M5? and ZIRLO? in comparison to Zircaloy-4 in air at temperatures from 973 to 1853 K. Generally, oxidation in air leads to a strong degradation of the cladding material. The main mechanism of this process is the formation of zirconium nitride and its re-oxidation. From the point of view of safety, the barrier effect of the fuel cladding is lost much earlier than during accident transients with a steam atmosphere only. Comparison of the three alloys investigated reveals a qualitatively similar, but quantitatively varying oxidation behavior in air. The mainly parabolic oxidation kinetics, where applicable, is comparable for the three alloys. Strong differences of up to 500% in oxidation rates were observed after transition to linear kinetics at temperatures below 1300 K. The paper presents kinetic rate constants as well as critical times and oxide scale thicknesses at the point of transition from parabolic to linear kinetics.
机译:本文介绍了先进的熔覆合金M5?的等温和瞬态氧化实验的结果。和ZIRLO?与在973至1853 K的温度下在空气中的Zircaloy-4相比。通常,空气中的氧化会导致覆层材料强烈降解。该过程的主要机理是氮化锆的形成及其再氧化。从安全的角度来看,与仅在蒸汽气氛中发生的事故瞬变相比,失去燃料包壳的屏障作用要早得多。比较所研究的三种合金,发现在质量上相似,但在空气中的氧化行为在数量上变化。三种合金的主要抛物线氧化动力学相当。在低于1300 K的温度下转变为线性动力学后,观察到氧化速率的最大差异高达500%。本文介绍了从抛物线动力学转变为线性动力学时的动力学速率常数以及临界时间和氧化皮厚度。

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