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Oxidation behaviour of the matrix materials in spherical fuel elements

机译:球形燃料元件中基体材料的氧化行为

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摘要

The oxidation resistance of the matrix materials is vital to the normal operation of HTGR and is also an important parameter for evaluating the safety response under accidental air or water-ingress conditions: The oxidation kinetics of the three matrix material components: natural graphite, artificial graphite and resin carbon, was studied in a flowing gas mixture of oxygen and nitrogen using an auto thermogravimetric system. The results indicate that the artificial graphite has the slowest oxidation rate followed by the natural graphite and then the resin carbon with the highest oxidation rate. Vacuum heat treatment of the natural graphite at 1950 °C decreases the impurities and increases the oxidation activation energy. Differences between the activation energy and the oxidation rate of the resin carbon heat treated at 1 950 ° and 1 600 °C resulted from changes in the micro-pore texture and the reduction of impurities.
机译:基体材料的抗氧化性对于HTGR的正常运行至关重要,也是评估意外空气或水浸条件下安全响应的重要参数:三种基体材料组分的氧化动力学:天然石墨,人造石墨使用自动热重分析系统在氧气和氮气的混合气体中研究了树脂和树脂碳。结果表明,人造石墨的氧化速率最低,其次是天然石墨,其次是树脂碳,其氧化速率最高。在1950°C下对天然石墨进行真空热处理可减少杂质并增加氧化活化能。在1950°C和1600°C下热处理的树脂碳的活化能和氧化速率之间的差异是由于微孔结构的变化和杂质的减少而引起的。

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