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Experimental Study of the Disperse Composition of Condensed Products of Aluminum-Particle Combustion in Air

机译:空气中铝颗粒燃烧的冷凝产物分散成分的实验研究

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The particle shape and structure and also the disperse composition of condensed products of combustion of ASD-1,ASD-4 and ASD-6 aluminum-based powders in air with oxidizer-to-fuel ratios of 0.12-0.4 and initial pressures of 0.05-0.30 MPa are examined.The mass of submicron particles of aluminum oxide amounts to 90% of the total mass of condensed combustion products.The mean mass diameter of particles is 0.15-0.18 mum and increases with increasing pressure.Under atmospheric pressure,the initial disperse composition of aluminum powders and the proportion between the components in the combustor volume have little or no effect on the disperse composition of the condensed phase.A comparative analysis is performed of the disperse composition of condensed phase particles formed due to aluminum combustion in various propellant mixtures and various combustors.It is shown that the main factors affecting the disperse composition are the type of the propellant mixture,the gas-dynamic combustion process,and the conditions determining the interaction of aluminum particles with each other and with the gas phase.
机译:ASD-1,ASD-4和ASD-6铝基粉末在空气中以氧化剂-燃料比为0.12-0.4,初始压力为0.05-F燃烧时的颗粒形状和结构以及冷凝产物的分散成分检验0.30 MPa。亚微米氧化铝颗粒的质量占冷凝燃烧产物总质量的90%。颗粒的平均质量直径为0.15-0.18μm,并随压力的增加而增加。在大气压下,初始分散铝粉的组成以及燃烧室容积中各组分之间的比例对冷凝相的分散组成影响很小或没有影响。对铝在各种推进剂混合物中燃烧而形成的冷凝相颗粒的分散组成进行了比较分析。结果表明,影响分散成分的主要因素是推进剂混合物的类型,气体动力燃烧的机理。的条件以及确定铝颗粒之间以及与气相之间相互作用的条件。

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