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The influence of aluminum powder dispersity on composite solid propellants ignitability by laser radiation

机译:铝粉分散性对复合固体推进剂激光辐射着火性的影响

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摘要

The results of experimental study of ignition process of composite solid propellants based on ammonium nitrate and energetic binder containing aluminum powders of various particle sizes by CO_2-laser radiation in air (with ambient pressure) are presented. Partial or complete replacement of micron-sized aluminum powder on Alex ultrafine powder as part of composite solid propellants leads to the reduction of ignition time by decrease the temperature of burning surface, thickness of reaction layer and by increase of the heating rate in condensed phase. It was found that the efficiency of ultrafine aluminum powder additives in formulations increasing with decreasing of laser radiation intensity. The temperature of the formulation's burning surface at the ignition moment was measured by usage of the thermal imager. The temperature of burning surface under ignition by radiant heat flux was 545-660 ℃ (formulations containing ultrafine aluminum powder) and 713-820 ℃ (formulations with micron-sized aluminum powder) for the radiation intensity 60 W/cm2.
机译:提出了通过硝酸铵和含高能粘结剂的复合固体推进剂的点火过程的实验研究的结果,该推进剂包含不同粒径的铝粉,通过空气中CO_2-激光辐射(在环境压力下)进行点火。作为复合固体推进剂的一部分,在Alex超细粉上部分或完全替代微米级铝粉,可通过降低燃烧表面的温度,降低反应层的厚度以及提高冷凝相的加热速率来缩短点火时间。发现超细铝粉添加剂在制剂中的效率随着激光辐射强度的降低而增加。通过使用热成像仪测量在点火时刻制剂燃烧表面的温度。辐射强度为60 W / cm2时,辐射热通量点燃的燃烧表面温度为545-660℃(含有超细铝粉的配方)和713-820℃(含有微米级铝粉的配方)。

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