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MEMS technology microthrusters and nanoenergetic materials for micropropulsion systems

机译:MEMS技术微生物系统和纳米植物材料

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Mini and micro air vehicles, missiles, guided munitions, projectiles and ordinances are controlled by control surfaces, thrust-vectoring and varying thrust. Microthrusters are key components of some classes of flight and naval vehicles. Solid-fuel rockets and microthrusters use solid propellants. Vehicles positioning, altitude control, orbital maneuver, aerodynamic orbit phasing and rotational manoeuvres are controlled. Enabled agility and maneuverability are achieved by advanced control schemes and propulsion systems. We examine microthrusters with solid propellants for micro- and miniature flight and naval vehicles. Fundamental, applied and experimental research and technology developments are performed by devising, designing and evaluating multi-physics MEMS technology microthrusters and propulsion systems with manoenergetic materials.
机译:迷你和微型航空器,导弹,引导弹药,射弹和法令是通过控制表面,推力矢量和不同推力控制的。 微型助手是某些航班和海军车辆的关键组成部分。 固体燃料火箭和微型燃料使用固体推进剂。 控制车辆定位,高度控制,轨道机动,空气动力学轨道序列和旋转机动。 通过先进的控制方案和推进系统实现了支持的敏捷性和机动性。 我们检查微型推进剂的微观推进剂,用于微型和微型飞行和海军车辆。 通过设计,设计和评估多物理MEMS技术微观蛋白和推进系统,进行基本,应用和实验研究和技术开发。

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