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Effect of hypersonic flow chemical composition on the oxidation behavior of a super-strong UHTC

机译:高超声速流动化学成分对超强UHTC氧化行为的影响

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A super-strong ZrB2 ceramic containing WC and SiC was tested in a supersonic arc-jet wind tunnel by exposure to flows with two chemical compositions, simulated air or pure nitrogen, at temperatures of 2650 and 2800 K. Temperature jumps of 500-600 K were observed in both environments at constant flow conditions. SEM analyses revealed that oxygen in the high-enthalpy flow retards the material consumption owing to the formation of partially protective glass. Then, it appears that even 5 vol% of W-compounds is sufficient to modify the subscale oxide configuration and form a cell-like multi-layered architecture typical of tungsten, rather than that typical of ZrB2.
机译:在超音速电弧喷射风洞中,通过在2650和2800 K的温度下暴露于具有两种化学成分(模拟空气或纯氮气)的气流中,对包含WC和SiC的超强ZrB2陶瓷进行了测试。温度跃迁为500-600 K在恒定流量条件下在两种环境中均观察到SEM分析表明,由于形成部分保护性玻璃,高焓流中的氧气阻碍了材料消耗。然后,似乎什至5vol%的W-化合物也足以修饰次尺度氧化物构型并形成典型的钨而不是ZrB2典型的细胞状多层结构。

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