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Development of composite solid propellent using dicyclopentadien binder.

机译:使用二环戊二烯粘合剂开发复合固体推进剂。

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摘要

Through the history of composite solid propellant binders new chemicals are introduced as binders to improve upon the previous generation. Sometimes this is done to improve upon the flaws or shortcomings of a previous binder. Other time it is to meet a new set of requirements desired by industry. Dicyclopentadiene (DCPD) is a hydrocarbon monomer being considered for its potential as a new binder in the composite propellant industry.;The binder of a composite solid propellant is arguably the most important feature of the propellant. It is the binder that provides the majority of the structural characteristics of the propellant while also contributing itself as fuel to the combustion process. A binder in composite propellants must also be able to accept the introduction of a large quantity of solid filler; oxidizer, fuel, and other energetic and non-energetic particles. Many of the composite propellants used in industry today have over 80% of their weight composed of non-binder solid or liquid fillers. These requirements must be met by the binder in some form or fashion to produce a propellant able to compete with binders currently in use.;When DCPD is polymerized it produces an extremely tough plastic with excellent tensile and impact strength. Experimentation has found that DCPD is able to support a large quantity of solid materials, over 80% weight of the mixture, while still retaining a great portion of its original strength. When compared to another similarly loaded binder currently used in industry, Hydroxyl-Terminated Polybutadiene (HTPB), it was found that DCPD composite propellant had nearly 1.5 times the stress capacity while still exhibiting over 75% of the strain capacity of HTPB based composite propellant. In addition it was also shown that DCPD composite propellant allows for tailoring of its mechanical properties with the addition of plasticizers. The DCPD based composite propellant also exhibits a burning rate nearly twice that HTPB. These factors combine make Dicyclopentadiene based composite propellant a potentially formidable competitor in the composite propellant industry.
机译:通过复合固体推进剂粘合剂的历史,引入了新的化学物质作为粘合剂,以改进上一代产品。有时这样做是为了改善以前的活页夹的缺点或不足。其他时间是要满足行业所需的一组新要求。双环戊二烯(DCPD)是一种烃类单体,被认为是复合推进剂工业中的一种新型粘合剂。复合固体推进剂的粘合剂可以说是推进剂的最重要特征。粘合剂提供了推进剂的大部分结构特征,同时也为燃烧过程提供了燃料。复合推进剂中的粘合剂还必须能够接受大量固体填料的引入。氧化剂,燃料以及其他高能和非高能颗粒。当今工业中使用的许多复合推进剂的重量超过80%是由非粘合剂的固体或液体填料组成。粘合剂必须以某种形式或方式满足这些要求,才能生产出能够与目前使用的粘合剂竞争的推进剂。当DCPD聚合时,它会生产出具有极佳拉伸强度和冲击强度的坚韧塑料。实验发现,DCPD能够支撑超过混合物重量80%的大量固体材料,同时仍保留其原始强度的很大一部分。与目前工业上使用的另一种类似负载的粘合剂羟基封端的聚丁二烯(HTPB)相比,发现DCPD复合推进剂的应力容量接近1.5倍,而仍表现出HTPB基复合推进剂的应变能力的75%以上。此外,还表明,DCPD复合推进剂可通过添加增塑剂来调整其机械性能。基于DCPD的复合推进剂的燃烧速率也几乎是HTPB的两倍。这些因素综合使基于二环戊二烯的复合推进剂成为复合推进剂行业中潜在的强大竞争者。

著录项

  • 作者

    Bluestone, Stephen Ray.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Aerospace.
  • 学位 M.S.A.A.
  • 年度 2010
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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