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High temperature oxidation and microstructural evolution of cold spray chromium coatings on Zircaloy-4 in steam environments

机译:蒸汽环境中锆铝 - 4冷雾铬涂层的高温氧化和微观结构演化

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Oxidation kinetics and microstructural evolution of cold sprayed Cr coatings on Zircaloy-4 at 1130 - 1310 degrees C in flowing steam at atmospheric pressure have been studied. The study is aimed at understanding of the response of Cr coated Zr-alloy under a steam environment and high temperatures pertinent to design basis accidents (DBAs) and beyond design basis accidents (BDBAs) in light water reactors (LWRs). Surface morphology, microstructure, and phases of post-oxidation test samples were characterized using Scanning Electron Microscopy (SEM), x-ray diffraction (XRD), and Scanning Transmission Electron Microscopy (STEM). Growth kinetics of the Cr-oxide scale and interdiffusion layers between the Cr coating and the Zr-alloy substrate were quantified from cross-sectional SEM images. Cross-sectional analysis showed that the Cr coatings offered a 50 times reduction in oxidation rate over bare Zircaloy-4 in a 1310 degrees C steam environment. Oxidation kinetics at 1130 degrees C followed parabolic law (i.e., n similar to 0.5 in power law kinetics) but at 1230 degrees C and 1310 degrees C the value of n was suppressed to below 0.5 possibly due to the volatilization of Cr species at the two highest temperatures. Interdiffusion at coating/substrate interface resulted in formation of a brittle Cr2Zr or Zr(Fe, Cr)(2) intermetallic compound layer on the order of micrometer in thickness and scattered Cr-rich precipitates were observed well below the interface within the Zr-alloy substrate after cooling. These experimental results could provide data to LWR system simulation codes for better estimation of coping time in the event of accidents. (C) 2019 Elsevier B.V. All rights reserved.
机译:研究了氧化动力学和冷喷涂Cr涂层在锆铝对1130-1310℃下的蒸汽在大气压下的流动中的氧化动力学和微观结构演化。该研究旨在了解Cr涂层Zr-合金在蒸汽环境下的响应和与设计基础事故(DBA)及更远的设计基础事故(BDBAS)在轻水反应器(LWRS)中的蒸汽环境和高温下的响应。使用扫描电子显微镜(SEM),X射线衍射(XRD)和扫描透射电子显微镜(Stew),表征了氧化后试验样品的表面形态,微观结构和阶段。从横截面SEM图像量化Cr氧化物尺度和Zr合金基板之间的Cr氧化物尺度和间隔层的生长动力学。横截面分析表明,CR涂层在1310℃的蒸汽环境中,在裸锆铝-4中氧化速率降低了50倍。 1130摄氏度下的氧化动力学跟踪抛物线法(即,在动力法动力学中类似于0.5的N,但在1230℃和1310℃下,由于两者的CR物种的挥发,可能抑制n的值低于0.5最高的温度。在涂布/衬底接口时的相互扩散导致形成脆性Cr2zr或Zr(Fe,Cr)(2)金属间化合物层,厚度厚度和散射的Cr富沉淀物在Zr-合金内的界面上均匀地观察到散射的富沉淀物冷却后的基材。这些实验结果可以为LWR系统仿真代码提供数据,以便在发生事故时更好地估计应对时间。 (c)2019 Elsevier B.v.保留所有权利。

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