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致密非晶SiCN低压热稳定性及高温导电行为
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作者 牛家宏 贾浩楠 +2 位作者 易法军 彭祖军 陈伟 《航空学报》 EI CAS CSCD 北大核心 2022年第S02期155-162,共8页
准确量化高超声速飞行器高温热端部件的气动加热量是开展热防护系统设计、提高热端部件可靠性的关键。通过开展致密非晶SiCN在低压环境下的热稳定性及高温导电行为研究探讨了将非晶SiCN应用于高超声速飞行器传感领域的可行性。结果表明... 准确量化高超声速飞行器高温热端部件的气动加热量是开展热防护系统设计、提高热端部件可靠性的关键。通过开展致密非晶SiCN在低压环境下的热稳定性及高温导电行为研究探讨了将非晶SiCN应用于高超声速飞行器传感领域的可行性。结果表明致密非晶SiCN在低压环境下表现出更低的高温稳定性及抗结晶能力,即在1300℃发生较明显的结晶及热分解,温度较常压高温处理非晶SiCN低约200℃;低压环境促进自由碳的有序化转变,导致1000℃低压高温处理非晶SiCN的电阻较常压高温处理非晶SiCN低约4个数量级,表现出更低的温度敏感性。总之非晶SiCN在低压环境下仍能保持优异的温度感知能力,但使用温度有所下降,降低约200℃。 展开更多
关键词 高温传感 SICN 低压 高温稳定性 高温导电 微结构演变
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Fabrication and Thermal Structural Characteristics of Ultra-high Temperature Ceramic Struts in Scramjets 被引量:2
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作者 解维华 peng zujun +2 位作者 金华 孟松鹤 PAN Yu 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第2期375-380,共6页
ZrB_2-SiC based ultra-high temperature ceramic(UHTC) struts were firstly proposed and fabricated with the potential application in the combustor of scramjets for fuel injection and flame-holding for their machinabil... ZrB_2-SiC based ultra-high temperature ceramic(UHTC) struts were firstly proposed and fabricated with the potential application in the combustor of scramjets for fuel injection and flame-holding for their machinability and excellent oxidation/ablation resistance in the extreme harsh environment. The struts were machined with electrospark wire-electrode cutting techniques to form UHTC into the desired shape, and with laser drilling to drill tiny holes providing the channels for fuel injection. The integrated thermal-structural characteristic of the struts was evaluated in high-temperature combustion environment by the propane-oxygen free jet facility, subject to the heat flux of 1.5 MW/m^2 lasting for 300 seconds, and the struts maintained integrity during and after the first experiment. The experiments were repeated for verifying the reusability of the struts. Fracture occurred during the second repeated experiment with the crack propagating through the hole. Finite element analysis(FEA) was carried out to study the thermal stress distribution in the UHTC strut. The simulation results show a high thermal stress concentration occurs at the hole which is the crack initiation position. The phenomenon is in good agreement with the experimental results. The study shows that the thermal stress concentration is a practical key issue in the applications of the reusable UHTC strut for fuel injection structure in scramjets. 展开更多
关键词 ultra-high temperature ceramic(UHTC) strut thermal stress fracture scramjet
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