首页> 外文期刊>Russian journal of physical chemistry, B. >Effect of the Thermophysical Properties of the Material of a Local Energy Source on Conditions and Characteristics of Ignition of Metallized Composite Propellants
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Effect of the Thermophysical Properties of the Material of a Local Energy Source on Conditions and Characteristics of Ignition of Metallized Composite Propellants

机译:局部能源材料热物理性质对金属化复合推进剂点火条件和点火特性的影响

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摘要

Solid-phase ignition of metallized composite propellants by a single particle heated to a high temperature under conditions of an ideal thermal contact has been numerically studied. The effect of the thermophysical properties of the material of a local energy source on the conditions and characteristics of ignition of composite propellants has been analyzed. It has been found that sources with a high heat storage capacity exhibit shorter ignition delay times for metallized propellants (by 10-60%) and lower initial temperatures required to initiate the combustion process (by 170 K). In addition, it has been found that the presence of particles of metals (boron, aluminum, magnesium, lithium) in the propellant composition leads to an increase in the effective thermal conductivity of the propellant. The cumulative effect of the thermophysical properties of the materials of the "particle heated to a high temperature-metallized composite propellant" system leads to an increase in the ignition delay times (by 25-65%) and the heat penetration depth of the near-surface layer of the propellant (by 25-40%) at the time of combustion initiation compared with metal-free compounds.
机译:数值研究了在理想的热接触条件下,加热到高温的单个颗粒对金属化复合推进剂的固相点火。分析了局部能源材料的热物理性质对复合推进剂着火条件和着火特性的影响。已经发现,具有高储热能力的源对于金属化推进剂显示较短的点火延迟时间(降低10-60%),并启动燃烧过程所需的初始温度较低(降低170 K)。另外,已经发现,推进剂组合物中金属(硼,铝,镁,锂)颗粒的存在导致推进剂的有效导热率增加。 “加热到高温金属化复合推进剂的粒子”系统的材料的热物理性质的累积效应导致点火延迟时间(增加了25-65%)和近距离热穿透深度的增加。与不含金属的化合物相比,助燃剂在燃烧开始时的表面层(降低25-40%)。

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