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Thermal Analysis of Tantalum Carbide-Hafnium Carbide Solid Solutions from Room Temperature to 1400 °C

机译:从室温到1400°C的碳化钽-碳化af固溶体的热分析

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The thermogravimetric analysis on TaC, HfC, and their solid solutions has been carried out in air up to 1400 °C. Three solid solution compositions have been chosen: 80TaC-20 vol % HfC (T80H20), 50TaC-50 vol % HfC (T50H50), and 20TaC-80 vol % HfC (T20H80), in addition to pure TaC and HfC. Solid solutions exhibit better oxidation resistance than the pure carbides. The onset of oxidation is delayed in solid solutions from 750 °C for pure TaC, to 940 °C for the T50H50 sample. Moreover, T50H50 samples display the highest resistance to oxidation with the retention of the initial carbides. The oxide scale formed on the T50H50 sample displays mechanical integrity to prevent the oxidation of the underlying carbide solid solution. The improved oxidation resistance of the solid solution is attributed to the reaction between Ta2O5 and HfC, which stabilizes the volume changes induced by the formation of Ta2O5 and diminishes the generation of gaseous products. Also, the formation of solid solutions disturbs the atomic arrangement inside the lattice, which delays the reaction between Ta and O. Both of these mechanisms lead to the improved oxidation resistances of TaC-HfC solid solutions.
机译:TaC,HfC及其固溶体的热重分析已在高达1400°C的空气中进行。除了纯TaC和HfC以外,还选择了三种固溶体成分:80TaC-20体积%HfC(T80H20),50TaC-50体积%HfC(T50H50)和20TaC-80体积%HfC(T20H80)。固溶体比纯碳化物具有更好的抗氧化性。在固溶体中,氧化的开始时间从纯TaC的750°C延迟到T50H50样品的940°C。此外,T50H50样品在保留初始碳化物的情况下显示出最高的抗氧化性。在T50H50样品上形成的氧化皮显示出机械完整性,可以防止下面的碳化物固溶体氧化。固溶体抗氧化性的提高归因于Ta2O5与HfC之间的反应,该反应稳定了由Ta2O5形成引起的体积变化,并减少了气态产物的产生。同样,固溶体的形成扰乱了晶格内部的原子排列,这延迟了Ta和O之间的反应。这两种机制都导致TaC-HfC固溶体的抗氧化性得到改善。

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