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首页> 外文期刊>Journal of propulsion and power >Development of a Power-Efficient, Restart-Capable Arc Ignitor for Hybrid Rockets
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Development of a Power-Efficient, Restart-Capable Arc Ignitor for Hybrid Rockets

机译:混合火箭的高能效,可重启电弧点火器的开发

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This paper details the development of a new ignition system concept that circumvents many of the difficulties associated with the current state of the art for hybrid rocket ignition systems. The technology is based on the unique electrical breakdown properties of additively manufactured acrylonitrile butadiene styrene. Strategic application of an electric field across the top of an additively manufactured acrylonitrile butadiene styrene fuel grain induces an electrostatic arc along the horizontally stacked manufactured surface features, and results in a small amount of pyrolyzed fuel vapor. When this event occurs simultaneous with the introduction of an oxidizing flow, the ablated hydrocarbon vapor together with residual energy from the electrical arc rapidly seeds combustion. Multiple incremental prototype systems were designed, built, and tested. Best conditions for successful operation were discovered, including minimum ignition pressure, optimal geometry, and electrical power requirements. An embedded ignitor design demonstrated "hands-off" restart capability using a lab-scale 75-mm-diam hybrid motor. The system was restarted up to a dozen consecutive times with no propellant changeover or replenishment.
机译:本文详细介绍了一种新的点火系统概念的开发,该概念可避免与混合动力火箭点火系统的当前技术水平相关的许多困难。该技术基于增材制造的丙烯腈丁二烯苯乙烯的独特电击穿特性。跨越增材制造的丙烯腈丁二烯苯乙烯燃料颗粒顶部的电场的战略应用会沿水平堆叠的加工表面特征产生静电电弧,并导致少量的热解燃料蒸气。当此事件与氧化流的引入同时发生时,烧蚀的碳氢化合物蒸气与电弧的残留能量一起迅速点燃了燃烧。设计,构建和测试了多个增量原型系统。发现了成功运行的最佳条件,包括最小点火压力,最佳几何形状和电功率要求。嵌入式点火器设计展示了使用实验室规模的75毫米直径混合动力发动机的“自动”重启功能。该系统最多可连续重启十二次,而无需进行推进剂转换或补给。

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