Reaction Capsule Design for Interaction of Heavy Liquid Metal Coolant, Fuel Cladding, and Simulated JOG Phase at Accident Conditions

Doğaç Tarı, Teodora Retegan Vollmer, Christine Geers
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Abstract

High temperature corrosion of fuel cladding material (15-15Ti) in high burn-up situations has been an important topic for molten metal-cooled Gen-IV reactors. The present study aims to investigate the simultaneous impact of liquid lead (coolant side) and cesium molybdate (fuel side) on the cladding tube material. A capsule was designed and built for experiments between 600 °C and 1000 °C. In order to simulate a cladding breach scenario, a notch design on the cladding tube was investigated pre- and postexposure. Material thinning by corrosion and leaching at temperatures ≥ 900 °C caused breaches at the notches after 168 h exposure. The temperature dependent cladding thinning phenomenon was used for kinetic interpretation. As the first of a two-part study, this paper will focus on the exposure capsule performance, including metallographic cross-section preparation and preliminary results on the interface chemistry.
事故条件下重液态金属冷却剂、燃料包壳和模拟 JOG 相相互作用的反应囊设计
燃料包壳材料(15-15Ti)在高燃耗情况下的高温腐蚀一直是熔融金属冷却第四代反应堆的一个重要课题。本研究旨在调查液态铅(冷却剂侧)和钼酸铯(燃料侧)同时对包壳管材料的影响。设计并建造了一个用于 600 °C 至 1000 °C 之间实验的封装。为了模拟包壳破裂的情况,对包壳管上的缺口设计进行了暴露前和暴露后的研究。在温度≥900 °C时,材料因腐蚀和浸出而变薄,在暴露168小时后,缺口处出现破损。包层变薄现象与温度有关,可用于动力学解释。作为两部分研究的第一部分,本文将重点介绍暴露胶囊的性能,包括金相截面制备和界面化学的初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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