评估不锈钢在流动FLiBe盐中的相容性

IF 2.1 3区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
B. A. Pint, D. Sulejmanovic, C. G. Parker, Y.-F. Su, M. J. Lance, R. Pillai
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引用次数: 0

摘要

为了解决在裂变和聚变反应堆应用中对LiF-BeF2 (FLiBe)相容性的巨大兴趣,进行了静态和流动相容性实验来评估与316H型不锈钢的相容性。在550°和650°C的静态测试中,测量到微小的质量变化,测试后的表征表明,盐中的Fe, Cr, Ni和Mn含量增加。在静态盐试验中加入Be,降低了Fe和Ni的溶解。在不添加Be的情况下,使用单金属316H热对流环(TCL)在650℃的峰值温度下运行1000 h,对流动的FLiBe的传质进行了初步评估。与先前流动的FLiNaK盐的结果相似,316H样品在热腿中表现出较小的质量损失。316H试样的测试后表征表明,热腿和冷腿中Cr表面损耗,冷腿中可能有铁沉积。为了进一步了解这种行为,在550-650°C的静态FLiBe中测量了Cr和Fe的溶解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing Stainless Steel Compatibility in Flowing FLiBe Salt

To address the considerable interest in LiF-BeF2 (FLiBe) compatibility for fission and fusion reactor applications, static and flowing compatibility experiments were conducted to assess the compatibility with type 316H stainless steel. In static testing at 550° and 650 °C, small mass changes were measured and posttest characterization of the FLiBe showed increased levels of Fe, Cr, Ni and Mn in the salt. Adding Be in the static salt test reduced the dissolution of Fe and Ni. An initial assessment of mass transfer in flowing FLiBe without a Be addition was conducted using a monometallic 316H thermal convection loop (TCL) operated for 1000 h with a peak temperature of 650 °C. Similar to prior results in flowing FLiNaK salt, the 316H specimens exhibited small mass losses in the hot leg. Posttest characterization of the 316H specimens suggested Cr surface depletion in the hot and cold legs and possibly Fe deposition in the cold leg. To further understand this behavior, Cr and Fe dissolution was measured in static FLiBe at 550–650 °C.

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来源期刊
Oxidation of Metals
Oxidation of Metals 工程技术-冶金工程
CiteScore
5.10
自引率
9.10%
发文量
47
审稿时长
2.2 months
期刊介绍: Oxidation of Metals is the premier source for the rapid dissemination of current research on all aspects of the science of gas-solid reactions at temperatures greater than about 400˚C, with primary focus on the high-temperature corrosion of bulk and coated systems. This authoritative bi-monthly publishes original scientific papers on kinetics, mechanisms, studies of scales from structural and morphological viewpoints, transport properties in scales, phase-boundary reactions, and much more. Articles may discuss both theoretical and experimental work related to gas-solid reactions at the surface or near-surface of a material exposed to elevated temperatures, including reactions with oxygen, nitrogen, sulfur, carbon and halogens. In addition, Oxidation of Metals publishes the results of frontier research concerned with deposit-induced attack. Review papers and short technical notes are encouraged.
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