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Large carbon cluster thin film gauges for measuring aerodynamic heat transfer rates in hypersonic shock tunnels

机译:大型碳簇薄膜仪表,用于测量高超音速冲击隧道中的空气动力学传热速率

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摘要

Different types of Large Carbon Cluster (LCC) layers are synthesized by a single-step pyrolysis technique at various ratios of precursor mixture. The aim is to develop a fast responsive and stable thermal gauge based on a LCC layer which has relatively good electrical conduction in order to use it in the hypersonic flow field. The thermoelectric property of the LCC layer has been studied. It is found that these carbon clusters are sensitive to temperature changes. Therefore suitable thermal gauges were developed for blunt cone bodies and were tested in hypersonic shock tunnels at a flow Mach number of 6.8 to measure aerodynamic heating. The LCC layer of this thermal gauge encounters high shear forces and a hostile environment for test duration in the range of a millisecond. The results are favorable to use large carbon clusters as a better sensor than a conventional platinum thin film gauge in view of fast responsiveness and stability.
机译:通过一步热解技术以各种比例的前驱体混合物合成不同类型的大碳簇(LCC)层。目的是开发一种基于LCC层的快速响应且稳定的热力计,该LCC层具有相对良好的导电性,以便在高超声速流场中使用。已经研究了LCC层的热电性质。发现这些碳簇对温度变化敏感。因此,为钝锥体开发了合适​​的温度表,并在高音速冲击隧道中以6.8马赫数的流量进行了测试,以测量空气动力加热。该热力计的LCC层承受高剪切力,并且在测试持续时间(毫秒)范围内处于不利环境。考虑到快速的响应性和稳定性,使用大型碳簇作为比常规铂薄膜量规更好的传感器的结果是有利的。

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