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Nanotechnology Research and Development for Military andIndustrial Applications

机译:军事和工业应用的纳米技术研发

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Researchers at the Army Aviation and Missile Research, Development, and Engineering Center (AMRDEC) have initiated multidiscipline efforts to develop nano-based structures and components for insertion into advanced missile aviation, and autonomous air and ground systems. The objective of the research is to exploit unique phenomena for the development of novel technology to enhance warfighter capabilities and produce precision weapons. The key technology areas that the authors are exploring include nano-based microsensors, nano-energetics, nano-batteries, nano-composites, and nano-plasmonics. By integrating nano-based devices, structures, and materials into weaponry, the Army can revolutionize existing (and future) missile systems by significantly reducing the size, weight and cost. The major research thrust areas include the development of chemical sensors to detect rocket motor off-gassing and toxic industrial chemicals; the development of highly sensitive/selective, self-powered miniaturized acoustic sensors for battlefield surveillance and reconnaissance; the development of a minimum signature solid propellant with increased ballistic and physical properties that meet insensitive munitions requirements; the development of nano-structured material for higher voltage thermal batteries and higher energy density storage; the development of advanced composite materials that provide high frequency damping for inertial measurement units' packaging; and the development of metallic nanostructures for ultraviolet surface enhanced Raman spectroscopy. The current status of the overall AMRDEC Nanotechnology research efforts is disclosed in this paper. Critical technical challenges, for the various technologies, are presented. The authors' approach for overcoming technical barriers and achieving required performance is also discussed. Finally, the roadmap for each technology, as well as the overall program, is presented.
机译:陆军航空和导弹研究,开发和工程中心(AMRDEC)的研究人员已经开始开发多学科努力,以开发基于纳米的结构和部件,以插入先进的导弹航空,以及自主空气和地面系统。该研究的目的是利用新技术开发的独特现象,以提高战艇能力并产生精密武器。作者正在探索的关键技术领域包括基于纳米的微传感器,纳米能量,纳米电池,纳米复合材料和纳米血浆。通过将基于纳米的器件,结构和材料集成到武器中,军队可以通过显着降低大小,重量和成本来彻底改变现有(和未来)导弹系统。主要的研究推力区域包括开发化学传感器,以检测火箭电机的废气和有毒工业化学品;用于战场监测和侦察高度敏感/选择性,自动小型声学传感器的开发;开发最小特征固体推进剂,符合不敏感弹药要求的弹道和物理性质增加;纳米结构材料的开发用于更高电压热电池和更高的能量密度存储;高级复合材料的开发,为惯性测量单位包装提供高频阻尼;紫外线表面增强拉曼光谱法的金属纳米结构的发展。本文披露了整体AMRDEC纳米技术研究努力的现状。提供了各种技术的关键技术挑战。还讨论了作者克服了技术障碍和实现所需性能的方法。最后,提出了每个技术的路线图以及整体程序。

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