碳纳米管对固体火箭推进剂性能的影响

IF 3.6
Weiqiang Pang , Xu Xia , Yu Zhao , Luigi T. DeLuca , Djalal Trache , Dihua OuYang , Saiqin Meng , Xiaogang Liu , Hongjian Yu
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引用次数: 2

摘要

燃烧速率催化剂(BRCs)通常用于调整固体火箭推进剂(SRPs)的燃烧速率。碳纳米管(CNTs)以其独特的结构和性能,已被世界各地的一些研究人员所研究,并具有广泛的应用。本文介绍了几种有价值的碳纳米管基材料及其效果。具体而言,讨论了碳纳米管对含能材料(EM)热行为的影响,并研究了碳纳米管/金属(金属氧化物,MO)复合材料对EM热降解的影响。SRP和固体火箭喷嘴发动机的应用可能受益于对燃烧速率、压力指数特性和危险方面的检查。研究发现,与类似的微米级添加剂相比,CNT可以改变SRP的燃烧行为并加快其燃烧速度。最后,还从制造、加工、定价和未来潜在用途的角度考察了在实施其中一些应用程序时遇到的困难。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of Carbon Nanotubes (CNTs) on the performance of Solid Rocket Propellants (SRPs): A short review

Effect of Carbon Nanotubes (CNTs) on the performance of Solid Rocket Propellants (SRPs): A short review

Burning rate catalysts (BRCs) are usually utilized to adjust the burning rates of solid rocket propellants (SRPs). Carbon nanotubes (CNTs), for their unique structure and properties, have been studied by several researchers worldwide with a wide range of applications. In this paper, several worthy CNTs-based materials and effects are described. Specifically, the influence of CNTs on the thermal behavior of energetic materials (EMs) are discussed, and we investigated the impact of CNTs/metal (metal oxide, MO) composites on the thermal degradation of EMs. Applications for SRPs and solid rocket nozzle motors might benefit from a focus on the examination of the burning rate, pressure exponent characteristics, and hazardous aspects. It was discovered that CNTs, as opposed to the comparable micro-sized additives, can modify the combustion behavior and speed up the burning of SRPs. Lastly, the difficulties encountered in implementing some of these applications are also examined in terms of manufacturing, processing, pricing, and potential future uses.

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