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Burn Rate Models for Gun Propellants

机译:喷枪推进剂的燃烧率模型

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In the past, Vieille's law and minor modifications of it described sufficiently the linear burning rate of gun propellants which governs the design of charges by interior ballistic simulations. Recent developments to increase the performance led to new gun concepts and innovative propellants. These are the electro thermal-chemical gun, porous and foamed charges as well as formulations exhibiting a temperature independent burning. Vieille's law cannot fully meet experimental results in these cases. Approaches based on the heat flow equation in the solid energetic material give simplified formulas to extend the validity. These burning rate models have the ability to describe the experimentally determined burning behavior at least in a simplified or qualitative way. More sophisticated methods consider complex geometrical structures in the solid or take into account the actual progress in phase behavior and reaction kinetics of heterogeneous combustion. The dependence of the burning rate on initial temperature, on phase transitions, porous structure and gaseous reactions can be described.
机译:过去,维耶定律及其微小修改充分描述了枪支推进剂的线性燃烧速率,该线性燃烧速率通过内部弹道模拟控制了装药设计。为了提高性能而进行的最新发展导致出现了新的喷枪概念和创新的推进剂。这些是电热化学枪,多孔和泡沫装药以及表现出温度独立燃烧的配方。在这些情况下,维耶定律不能完全满足实验结果。基于固体高能材料中热流方程的方法给出了简化的公式以扩展有效性。这些燃烧速率模型具有至少以简化或定性的方式描述实验确定的燃烧行为的能力。更复杂的方法考虑了固体中复杂的几何结构,或考虑了相行为和异质燃烧反应动力学的实际进展。可以描述燃烧速率对初始温度,相变,多孔结构和气态反应的依赖性。

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