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Ceramic and coating applications in the hostile environment of a high temperature hypersonic wind tunnel

机译:陶瓷和涂料在高温高超声速风洞的恶劣环境中的应用

摘要

A Mach 7, blowdown wind tunnel was used to investigate aerothermal structural phenomena on large to full scale high speed vehicle components. The high energy test medium, which provided a true temperature simulation of hypersonic flow at 24 to 40 km altitude, was generated by the combustion of methane with air at high pressures. Since the wind tunnel, as well as the models, must be protected from thermally induced damage, ceramics and coatings were used extensively. Coatings were used both to protect various wind tunnel components and to improve the quality of the test stream. Planned modifications for the wind tunnel included more extensive use of ceramics in order to minimize the number of active cooling systems and thus minimize the inherent operational unreliability and cost that accompanies such systems. Use of nonintrusive data acquisition techniques, such as infrared radiometry, allowed more widespread use of ceramics for models to be tested in high energy wind tunnels.
机译:使用7马赫排污风洞来研究大型到大规模高速车辆部件上的空气热结构现象。高能测试介质是甲烷与空气在高压下燃烧产生的,可提供高超声速流动在24至40 km高度的真实温度模拟。由于必须保护风洞以及模型免受热引起的损坏,因此广泛使用了陶瓷和涂料。涂层既用于保护各种风洞组件,又用于提高测试流的质量。风洞的计划改造包括更广泛地使用陶瓷,以最大程度地减少主动冷却系统的数量,从而最大程度地减少此类系统所固有的运行不可靠性和成本。使用非介入式数据采集技术(例如红外辐射测定法)可以更广泛地将陶瓷用于在高能风洞中测试的模型。

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