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Nano Additives and Plateau Burning Rates of Ammonium-Perchlorate-Based Composite Solid Propellants

机译:纳米添加剂和高氯酸铵基复合固体推进剂的平台燃烧速率

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Plateau propellants exhibit burning rate curves that do not follow the typical linear relationship between burning rate and pressure when plotted on a log-log scale, and because of this deviation, their burning behavior is classified as anomalous burning. This paper contains a literature review chronicling the last half-century of research to better understand the mechanisms that govern anomalous burning and to shed light on current research into plateau and related propellants. In addition to the review, a series of experiments investigating the use of nanoscale TiO_2-based additives in ammonium-perchlorate hydroxyl-terminated polybutadiene composite propellants was performed. The baseline propellant consisted of either 70 or 80% monomodal ammonium perchlorate (223 μm) and 30 or 20% binder composed of isophorone-diisocyanate-cured hydroxyl-terminated polybutadiene with Tepanol. Propellants were tested using a strand bomb between 3.45 and 17.24 MPa (34.0-170.1 atm). Analysis of the burning rate data shows that the crystal phase and synthesis method of the TiO_2 additive are influential to plateau tailoring and to the apparent effectiveness of the additive in altering the burning rate of the composite propellant. Some of the discrepancy in the literature regarding the effectiveness of TiO_2 as a tailoring additive may be due to differences in how the additive was produced. Doping the TiO_2 with small amounts of metallic elements (Al, Fe, or Gd) showed additional effects on the burning rate that depend on the doping material and the amount of the dopant. This work provides the first published propellant mixtures and burning rate results for composite propellants employing metal-doped nanoparticle additives.
机译:当以对数-对数标度绘制时,高原推进剂的燃烧速率曲线不遵循燃烧速率与压力之间的典型线性关系,并且由于这种偏差,其燃烧行为被归类为异常燃烧。本文包含对过去半个世纪的研究进行编年史的文献综述,以更好地了解控制异常燃烧的机制,并阐明当前对高原和相关推进剂的研究。除了该综述之外,还进行了一系列实验,研究了纳米级TiO_2基添加剂在高氯酸铵羟基封端的聚丁二烯复合推进剂中的使用。基准推进剂由70%或80%的单峰高氯酸铵(223μm)和30%或20%的粘结剂组成,粘结剂由异佛尔酮-二异氰酸酯固化的羟基封端的聚丁二烯与戊二醇组成。使用介于3.45和17.24 MPa(34.0-170.1 atm)之间的绞弹测试推进剂。燃烧速率数据的分析表明,TiO_2添加剂的晶相和合成方法对平台修整和添加剂在改变复合推进剂燃烧速率方面的表观有效性有影响。关于TiO_2作为定制添加剂的有效性的文献中的某些差异可能是由于添加剂的生产方式不同所致。用少量金属元素(Al,Fe或Gd)掺杂TiO_2表现出对燃烧速率的其他影响,这取决于掺杂材料和掺杂剂的量。这项工作为使用金属掺杂纳米粒子添加剂的复合推进剂提供了首次公开的推进剂混合物和燃烧速率结果。

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  • 来源
    《Journal of propulsion and power》 |2009年第5期|1068-1078|共11页
  • 作者单位

    Texas A&M University, College Station, Texas 77843 Mechanical Engineering, Turbomachinery Laboratory;

    Texas A&M University, College Station, Texas 77843 Mechanical Engineering, Turbomachinery Laboratory;

    University of Central Florida, Orlando, Florida 32816 Advanced Materials Processing and Analysis Center;

    University of Central Florida, Orlando, Florida 32816 Material, Mechanical, and Aerospace Engineer;

    University of Central Florida, Orlando, Florida 32816 Advanced Materials Processing and Analysis Center;

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  • 入库时间 2022-08-17 13:19:29

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