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首页> 外文期刊>CERAMICS INTERNATIONAL >Evaluation of oxidation behaviors of HfC-SiC ultra-high temperature ceramics at above 2500 degrees C via oxyacetylene torch
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Evaluation of oxidation behaviors of HfC-SiC ultra-high temperature ceramics at above 2500 degrees C via oxyacetylene torch

机译:通过氧乙炔炬在2500摄氏度上高于2500℃的HFC-SiC超高温陶瓷的氧化行为

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摘要

Development of materials highly resistant to harsh conditions (including ultra-high temperature) has been a crucial issue for the development of next-generation hyper velocity vehicles. HfC-SiC ceramics have been attractive as suitable candidates for these applications owing to their extraordinarily high melting temperatures. Here, HfC-SiC ceramics with ultra-fine grains, prepared via reactive spark plasma sintering, were tested under an oxyacetylene torch flame for relatively long exposure times (5-30 min). The oxidation behaviors of the samples were carefully characterized by microstructural analysis. Although porous structures were formed due to the generation and escape of gas phases, the mixture of oxidized species composed of HfO2 granules and melted SiO2 phase, acted as an excellent barrier under the condition of severe high-temperature oxidation.
机译:开发高度耐苛刻条件(包括超高温)的材料对下一代超速车辆的发展是一个至关重要的问题。 由于其非凡的熔化温度,HFC-SIC陶瓷作为适用于这些应用的合适候选者。 这里,通过反应性火花等离子体烧结制备的具有超细晶粒的HFC-SiC陶瓷在氧基乙炔炬火焰下进行测试,以进行相对长的曝光时间(5-30分钟)。 通过微观结构分析仔细描述样品的氧化行为。 尽管由于气相的产生和逃逸而形成多孔结构,但是由HFO2颗粒和熔化的SiO 2相组成的氧化物种的混合物作用为严重高温氧化条件下的优异屏障。

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