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Effect of Metal Additives on the Combustion Characteristics of High-Energy Materials

机译:金属添加剂对高能材料燃烧特性的影响

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Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion products showed, that at the increase of aluminum powder dispersity the specific impulse and combustion temperature of solid propellants are reduced due to the decrease of the mass fraction of active aluminum in particles. Partial or complete replacement of aluminum by metal powder (B, Mg, AlB2, AlMg alloy, Fe, Ti and Zr) in HEMs composition leads to the reduce of the specific impulse and combustion temperature. Replacement of aluminum powder by boron and magnesium in HEM reduces the mass fraction of condensed products in the combustion chamber of solid rocket motor. So, for compositions HEMs with boron and aluminum boride the mass fraction in chamber is reduced by 24 and 36 %, respectively, with respect to the composition HEMs with Al powder. But the mass fraction of CCPs in the nozzle exit increases by 13 % for HEMs with aluminum boride due to the formation of boron oxide in the condensed combustion products. Partial replacement of 2 wt. % aluminum powder by iron and copper additives in HEM leads to the reduce of CCPs mass fraction in chamber by 4–10 % depending on the aluminum powder dispersity duo to these metals are not formed condensed products at the HEMs combustion in chamber.
机译:燃烧参数的热力学计算和HEMs燃烧产物的平衡组成表明,随着铝粉分散度的增加,固体推进剂的比冲和燃烧温度会降低,这是由于颗粒中活性铝的质量分数降低。 HEMs成分中的金属粉末(B,Mg,AlB2,Al Mg合金,Fe,Ti和Zr)部分或完全替代铝可导致比冲和燃烧温度的降低。 HEM中的硼和镁替代铝粉可降低固体火箭发动机燃烧室中冷凝产物的质量分数。因此,对于具有硼和硼化铝的成分HEM,相对于具有Al粉的成分HEM,腔室内的质量分数分别降低了24%和36%。但是对于含硼化铝的HEM,喷嘴出口中CCP的质量分数增加了13%,这是由于在冷凝的燃烧产物中形成了氧化硼。部分替换2 wt。 HEM中铁和铜添加剂中铝粉的百分含量会导致燃烧室中CCP的质量分数降低4-10%,具体取决于铝粉对这些金属的分散度不因HEM在室内燃烧而形成冷凝产物。

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