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LASER IGNITION PROPERTIES OF COMPOSITE NANOMETRIC ENERGETIC MATERIALS

机译:复合纳米含能材料的激光点火性能

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Laser ignition delay experiments were conducted in order to better understand the effects of thermal and chemical properties on ignition mechanisms for energetic materials. A Nd:YAG laser (10 ms, ~2 J, 3-mm beam diameter, 1064-nm wavelength) was used to heat the top surface of a reactive material powder, and ignition delay was calculated as the difference between first light of the laser's flash lamp and the sample. In the compositions tested, nanometric aluminum (Al) was used as the fuel and combined stoichiometrically with an oxidizer [copper oxide (CuO), iodine pentoxide (I_2O_5), polytetrafluoroethylene (C_2F_4), molybdenum trioxide (MoO_3), tungsten trioxide (WO3), or iron oxide (Fe_2O3)]. Results show that ignition delays for asymmetrical heating are strongly affected by thermal properties. A key result is that ignition delay was found to be inversely proportional to the molar heat capacity of the oxidizer.
机译:进行激光点火延迟实验是为了更好地了解热能和化学性质对高能材料点火机理的影响。用Nd:YAG激光(10 ms,〜2 J,光束直径3 mm,波长1064 nm)加热反应性材料粉末的顶面,并计算点火延迟,作为反应材料的第一束光之间的差。激光的闪光灯和样品。在测试的组合物中,纳米铝(Al)用作燃料,并与氧化剂[氧化铜(CuO),五氧化碘(I_2O_5),聚四氟乙烯(C_2F_4),三氧化钼(MoO_3),三氧化钨(WO3)化学计量结合,或氧化铁(Fe_2O3)]。结果表明,不对称加热的点火延迟受热性能的强烈影响。关键结果是,发现点火延迟与氧化剂的摩尔热容成反比。

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