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首页> 外文期刊>Journal of Materials Science >High speed propulsion: Performance advantage of advanced materials
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High speed propulsion: Performance advantage of advanced materials

机译:高速推进:先进材料的性能优势

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High-speed air breathing propulsion systems have many attractive military and civil applications. The high propulsive efficiency of these systems allows the exploitation of speed, distance, and bigger payloads, or any combination of the three. The severe operating conditions of these systems require particular attention to overall thermal management of the engine/air-frame. Fuel-cooling the engine structure is a viable way of maintaining thermal balance over a range of flight conditions. Air Force applications have focused on using endothermic hydrocarbon fuels to address this issue because of their compatibility with the military operations. Recent ground tests of scramjet engines have demonstrated adequate performance utilizing state-of-the-art technology in materials. This progress has paved the way for an expendable flight test vehicle in the near future. In order to take full advantage of the capabilities of this propulsion system, advances in fuel-cooled structures, high temperature un-cooled materials, and increased heat capacity of hydrocarbon fuels will be needed to enable expendable systems to reach higher Mach numbers. An additional benefit would be realized in future reusable systems. (C) 2004 Kluwer Academic Publishers.
机译:高速呼吸推进系统在军事和民用领域具有许多诱人的用途。这些系统的高推进效率允许利用速度,距离和更大的有效载荷,或三者的任意组合。这些系统的严酷工况要求特别注意发动机/机身的整体热管理。对发动机结构进行燃料冷却是在一定范围的飞行条件下保持热平衡的可行方法。由于与军事行动兼容,空军的应用集中于使用吸热的碳氢化合物燃料来解决该问题。最近对超燃冲压发动机的地面测试表明,利用材料方面的最新技术具有足够的性能。这一进展为不久的将来研制出可消耗的飞行测试工具铺平了道路。为了充分利用该推进系统的功能,将需要燃料冷却结构,高温非冷却材料以及碳氢燃料的热容量增加的改进,以使消耗性系统达到更高的马赫数。在将来的可重用系统中将实现额外的好处。 (C)2004 Kluwer学术出版社。

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