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首页> 外文期刊>Journal of the European Ceramic Society >High temperature oxidation of Zr- and Hf-carbides: Influence of matrix and sintering additive
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High temperature oxidation of Zr- and Hf-carbides: Influence of matrix and sintering additive

机译:Zr和Hf碳化物的高温氧化:基体和烧结添加剂的影响

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Ultra-high temperature ceramics having melting points above 3500 K and high thermal conductivities are envisaged as future receivers of concentrating solar power plants. The high pressure and solar temperature reactor (Reacteur Hautes Pression et Temperature Solaire, REHPTS) implemented at the focus of the Odeillo 5 kW solar furnace was used to investigate the oxidation of three refractory carbides containing different sintering additives (HfC/MoSi2, ZrC/MoSi2, ZrC/TaSi2) that could be considered as promising candidates. The concentration of the additive, TaSi2 or M0S12, was 20 vol%. Each kind of sample was oxidized in air for 20 min at 1800, 2000 and 2200 K. Experiments were filmed using a video camera and the gaseous phases were analyzed in situ by mass spectrometry. Various post-test characterizations have shown that the nature of the carbide and additive strongly affects the composition of the oxide layer and therefore the high-temperature behaviour.
机译:熔点高于3500 K且具有高导热率的超高温陶瓷被认为是未来聚光太阳能发电厂的接收器。以Odeillo 5 kW太阳炉为重点的高压太阳能高温反应器(Reacteur Hautes Pression et Temperature Solaire,REHPTS)用于研究三种包含不同烧结添加剂(HfC / MoSi2,ZrC / MoSi2)的难熔碳化物的氧化,ZrC / TaSi2),可以被视为有前途的候选人。添加剂TaSi 2或MoS 12的浓度为20体积%。每种样品在1800、2000和2200 K下在空气中氧化20分钟。使用摄像机对实验进行拍摄,并通过质谱法对气相进行原位分析。各种测试后的特征表明,碳化物和添加剂的性质强烈影响氧化物层的组成,从而影响高温性能。

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