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Erosive Burning Study Utilizing Ultrasonic Measurement Techniques

机译:利用超声测量技术进行侵蚀燃烧研究

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摘要

A 6-segment subscale motor was developed to generate a range of internal environments from which multiple propellants could be characterized for erosive burning. The motor test bed was designed to provide a high Mach number, high mass flux environment. Propellant regression rates were monitored for each segment utilizing ultrasonic measurement techniques. These data were obtained for three propellants RSRM, ETM- 03, and Castor@ IVA, which span two propellant types, PBAN (polybutadiene acrylonitrile) and HTPB (hydroxyl terminated polybutadiene). The characterization of these propellants indicates a remarkably similar erosive burning response to the induced flow environment. Propellant burnrates for each type had a conventional response with respect to pressure up to a bulk flow velocity threshold. Each propellant, however, had a unique threshold at which it would experience an increase in observed propellant burn rate. Above the observed threshold each propellant again demonstrated a similar enhanced burn rate response corresponding to the local flow environment.
机译:开发了6段式小型发动机,以产生一系列内部环境,从中可以鉴定出多种推进剂用于侵蚀性燃烧。电机测试台的设计可提供高马赫数,高质量通量的环境。使用超声测量技术监测每个段的推进剂消退率。这些数据是针对三种推进剂RSRM,ETM-03和Castor IVA获得的,它们涵盖了两种推进剂类型,即PBAN(聚丁二烯丙烯腈)和HTPB(羟基封端的聚丁二烯)。这些推进剂的特征表明对诱导流动环境的侵蚀燃烧反应非常相似。每种类型的推进剂燃烧速率对压力的反应都达到常规,直至达到总流速阈值。但是,每种推进剂都有一个独特的阈值,在该阈值下,所观察到的推进剂燃烧速率会增加。在所观察到的阈值之上,每种推进剂再次表现出对应于局部流动环境的类似的增强的燃烧速率响应。

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  • 作者

    Furfaro, James A.;

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  • 年度 2003
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