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A study of the oxidation behaviour of FeCrAl-ODS in air and steam environments up to 1400 degrees C

机译:空气和蒸汽环境中杂交渗透行为的研究高达1400℃

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摘要

As a candidate accident tolerant fuel cladding material, the high temperature oxidation behaviour of an Oxygen Dispersion Strengthened (ODS) Fe-12Cr-6Al alloy has been examined in isothermal air and steam environments. While the oxidation behaviour of FeCrAl has been extensively studied, very little has been reported in the literature on FeCrAl-ODS, which is the focus of this manuscript. By conducting Thermogravimetric Analysis (TGA), oxidation experiments were performed on specimens of Fe-12Cr-6Al-ODS at temperatures up to 1400 degrees C in air and up to 1215 degrees C in high purity steam. Oxidation kinetics were evaluated by calculating reaction rate constants and activation energies. The formation of an alumina scale was correlated to kinetics results from TGA by coupling Scanning Electron Microscopy (SEM) with Energy Dispersive X-ray Spectroscopy (EDS) line scans to investigate the chemical composition of the primary oxide layer, local oxidation effects, as well as the bulk alloy material. Electron Probe Micro-Analysis (EPMA) point scans were applied to the heavily oxidized specimen to achieve an accurate composition profiling of areas of interest. Finally, thermodynamic calculations were performed to interpret the formation of the complex oxide layer. These experiments support research efforts for the development of accident tolerant fuel technologies at Nippon Nuclear Fuel Development Co., Ltd. (C) 2020 Elsevier B.V. All rights reserved.
机译:作为候选事故耐性燃料包层材料,在等温空气和蒸汽环境中研究了加强氧分散的高温氧化行为(ODS)Fe-12Cr-6Al合金。虽然群体的氧化行为已经过广泛研究,但在群体 - 臭虫的文献中报告了很少,这是本手稿的重点。通过导电热重分析(TGA),在高达1400℃的Fe-12cr-6Al-ODS的标本中进行氧化实验,在高达1400℃的空气中,高于高纯度蒸汽。通过计算反应速率常数和活化能量来评估氧化动力学。通过将扫描电子显微镜(SEM)与能量分散X射线光谱(EDS)线扫描来研究初级氧化物层,局部氧化效果的化学成分,形成氧化铝量表与TGA的动力学相关结果与TGA相关。作为散装合金材料。电子探针微分析(EPMA)点扫描应用于重型氧化标本,以实现感兴趣区域的准确组合物谱。最后,进行热力学计算以解释复合氧化物层的形成。这些实验支持在日本核燃料开发有限公司(C)2020 Elsevier B.V.保留的所有权利,支持研究努力。

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