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This work employed an inductively coupled plasma wind tunnel to study the dynamic oxidation mechanisms of carbon fiber reinforced SiC matrix composite(Cf/SiC)in high-enthalpy and high-speed plasmas.The results highlighted a transition of passive/active oxidations of SiC at 800-1600℃and 1-5 kPa.Specially,the active oxidation led to the corrosion of the SiC coating and interruption of the SiO2 growth.The transition borders of active/passive oxidations were thus defined with respect to oxidation temperature and partial pressure of atomic O in the high-enthalpy and high-speed plasmas.In the transition and passive domains,the SiC dissipation was negligible.By multiple dynamic oxidations of Cf/SiC in the domains,the SiO2 thickness was not monotonously increased due to the competing mechanisms of passive oxidation of SiC and dissipation of SiO2.In addition,the mechanical properties of the SiC coating/matrix and the Cf/SiC were maintained after long-term dynamic oxidations,which suggested an excellent thermal stability of Cf/SiC serving in thermal protection systems(TPSs)of reusable hypersonic vehicles.
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篇名 Dynamic oxidation mechanism of carbon fiber reinforced SiC matrix composite in high-enthalpy and high-speed plasmas
来源期刊 先进陶瓷(英文版) 学科
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年,卷(期) 2022,(2) 所属期刊栏目 Research Article
研究方向 页码范围 365-377
页数 13页 分类号
字数 语种 英文
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先进陶瓷(英文版)
季刊
2226-4108
10-1154/TQ
eng
出版文献量(篇)
290
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0
总被引数(次)
157
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