...
【24h】

Aims and Scope

机译:目的与范围

获取原文
获取原文并翻译 | 示例
           

摘要

The main purpose for this journal is to promote scientific investigation, technical advancements, and information exchange in the two closely related areas of energetic materials (EM) and chemical propulsion (CP). Numerous energetic materials have been developed recently for various chemical propulsion applications. Significant advancements in energetic material synthesis, characterization, and model simulation have also been made in recent years. It is expected that this trend will continue even at a greater pace in the future. Nano-sized ingredients and certain novel components offer specific advantages for both military and commercial applications in the chemical propulsion field. The ignition and combustion behavior of various new materials have shown special characteristics based upon experimental, theoretical, and computational research efforts. With the current emphasis on environmental impact, safety, and efficiency, efforts will be made in future development by considering green, insensitive, and high-performance energetic materials. In the chemical propulsion area, there have been numerous advancements in solid, liquid, and hybrid rockets. Similarly, energetic fuels and oxidizers have been formulated and processed for solid-fuel ramjets, ducted rockets, pulse detonation engines, etc. Many challenging problems, such as erosion of nozzle and high-temperature insulation materials, are topics of today's research. In spite of notable advances, many technological gaps have been identified in the combustion of energetic materials for propulsion purposes. This journal is intended to provide a valuable source of technical information associated with the energetic material development related to the advancements in chemical propulsion systems.
机译:该期刊的主要目的是促进高能材料(EM)和化学推进(CP)这两个密切相关的领域中的科学研究,技术进步和信息交换。最近已经开发出许多用于各种化学推进应用的高能材料。近年来,高能材料的合成,表征和模型模拟也取得了重大进展。预计这种趋势将在未来以更大的速度持续下去。纳米级成分和某些新颖成分为化学推进领域的军事和商业应用提供了特殊的优势。基于实验,理论和计算研究的成果,各种新材料的着火和燃烧行为都显示出特殊的特性。当前强调环境影响,安全和效率,将在考虑绿色,不敏感和高性能的高能材料的情况下为未来的发展做出努力。在化学推进领域,固体,液体和混合动力火箭取得了许多进步。同样,高能燃料和氧化剂也已被配制和加工用于固体燃料冲压发动机,管道火箭,脉冲爆震发动机等。许多挑战性问题,例如喷嘴的侵蚀和高温绝缘材料,是当今研究的主题。尽管取得了显着进步,但在用于推进目的的高能材料燃烧中发现了许多技术空白。该杂志旨在提供与化学推进系统进步有关的高能材料开发相关的技术信息的宝贵来源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号