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Response of TEGDN Propellants to Plasma Ignition with the Same Magnitude of Ignition Energy as Conventional Igniters in an Interrupted Burning Simulator

机译:在中断燃烧模拟器中,TEGDN推进剂对等离子点火能量与传统点火器相同的等离子体点火的响应

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In order to consider the potential influence of ignition energy factors on the response of double base propellants plasticized with triethyleneglycol dinitrate (TEGDN propellants), the influence of different ignition methods at the same magnitude of ignition energy level on the response of TEGDN propellants was investigated in an interrupted burning simulator. Compared to conventional ignition methods, plasma ignition exhibits a significantly shorter ignition delay and lower ignition energy. There are stronger ablation and impact interactions of plasma flow with the surface of propellants. For TEGDN propellants coated with titanium dioxide, a greater amount of melted white layer is deposited on the surface of propellants. The content of copper on the surface of recovered plasma-ignited samples observed by X-ray Fluorescence (XRF) spectroscopy is much larger than that on the surface of recovered conventionally ignited samples, indicating more deposition of copper wire discharge on the surface of the samples. The test results will benefit the design of plasma generator and electrical parameters of pulse power to satisfy certain propellant compositions.
机译:为了考虑点火能因素对用三硝酸二乙二醇酯增塑的双基推进剂(TEGDN推进剂)的响应的潜在影响,研究了在相同点火能级下不同点火方法对TEGDN推进剂响应的影响。中断的刻录模拟器。与常规点火方法相比,等离子点火具有明显更短的点火延迟和更低的点火能量。等离子体流与推进剂表面之间存在更强的消融和冲击相互作用。对于涂有二氧化钛的TEGDN推进剂,大量的熔化白色层沉积在推进剂表面。通过X射线荧光(XRF)光谱观察到的在回收的等离子体点火样品表面上的铜含量远大于在常规点火回收样品表面上的铜含量,表明铜丝放电在样品表面上的沉积更多。测试结果将有利于等离子发生器的设计以及脉冲功率的电参数以满足某些推进剂成分。

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