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首页> 外文期刊>Journal of the European Ceramic Society >Oxidation, mechanical and thermal properties of hafnia-silicon carbide nanocomposites
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Oxidation, mechanical and thermal properties of hafnia-silicon carbide nanocomposites

机译:氧化f-碳化硅纳米复合材料的氧化,机械和热性能

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摘要

Dense nanocomposites constituted from 70/30 vol% of hafnia-silicon carbide and were prepared by spark plasma sintering. Silicon carbide suppresses grain growth. The fracture strength of as prepared composites is 400-600MPa. Oxidation up to 1600 °C in air for 10 h has minor influence on the mechanical strength, which is ascribed to the dense nature of the oxidation scale. The high density of the oxidation scale is attributed to a volume increase when silicon carbide oxidizes and reacts with hafnia to form hafnium silicate. The composite has a thermal conductivity of 14 W m~(-1) K~(-1) at room temperature. Design approaches for further enhancement of ultrahigh temperature properties of oxide/non-oxide composites arc discussed.
机译:由70/30体积%的氧化70-碳化硅构成的致密纳米复合材料,是通过火花等离子体烧结制备的。碳化硅抑制晶粒生长。所制备的复合材料的断裂强度为400-600MPa。在空气中高达1600°C的温度氧化10小时对机械强度的影响很小,这归因于氧化皮的致密性。氧化皮的高密度归因于碳化硅氧化并与氧化nia反应形成硅酸ha时体积增加。该复合材料在室温下的热导率为14 W m〜(-1)K〜(-1)。讨论了进一步提高氧化物/非氧化物复合材料超高温性能的设计方法。

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