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Inorganic Nanoparticles for Gun Propellants

机译:枪炮用无机纳米粒子

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The possibility of increasing the burning rate of solid rocket propellants by adding nanoparticles of aluminum into the propellant formulation has already been well-known for many years. This paper deals with micron- and nanoparticles embedded in gun propellants. The objective is to increase the gun performance. The burning behavior of solid propellants based on ultra-fine aluminum powder was investigated in a high pressure range which is reached in a gun tube. The burning rate of such a propellant is much higher (nearly two orders of magnitude) than for the similar propellant with the micron-sized aluminum. This paper presents a review of burning experiments with propellants based on the nano- and micron-sized particles of aluminum. The burning behavior of NENA solid propellants based on nano-scale aluminum was studied as a function of the portion of aluminum in the mixture. The burning of these propellants follows Vieille's burning law. The burning rate increases by augmenting the aluminum portion in the propellant. Theoretical models are reviewed in order to understand these experimental burning results. An advanced propellant coated with appropriate nanoparticles is presented in the conclusion. With this propellant and a special ignition by microwaves it should be possible to ignite solid propellants by using high loading densities (> 1.2 g/cm~3).
机译:通过将铝的纳米颗粒添加到推进剂配方中来提高固体火箭推进剂的燃烧速率的可能性已经众所周知了许多年。本文研究了嵌入在火药推进剂中的微米和纳米颗粒。目的是提高喷枪性能。在枪管达到的高压范围内,研究了基于超细铝粉的固体推进剂的燃烧行为。这种推进剂的燃烧速率比微米级铝的类似推进剂要高得多(接近两个数量级)。本文介绍了基于纳米和微米大小的铝颗粒的推进剂燃烧实验的综述。研究了基于纳米铝的NENA固体推进剂的燃烧行为随混合物中铝含量的变化。这些推进剂的燃烧遵循维耶尔的燃烧法。通过增加推进剂中的铝部分,燃烧率增加。为了理解这些实验性燃烧结果,对理论模型进行了回顾。结论中提出了涂覆有适当纳米颗粒的先进推进剂。使用这种推进剂并通过微波进行特殊点火,应有可能通过使用高载荷密度(> 1.2 g / cm〜3)来点燃固体推进剂。

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