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Combustion properties of a low-vulnerability propellant: an experimental and theoretical study using laser ignition

机译:低脆弱性推进剂的燃烧特性:使用激光点火进行实验和理论研究

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Ignition and combustion characteristics of a low-vulnerability propellant based on RDX are studied experimentally. Ignition is obtained using a laser diode. Experiments are performed in a cylindrical closed-volume reactor for different initial pressures and initial propellant masses under nitrogen and argon surrounding atmospheres. Ignition delays, maximal overpressures, and propagation rates are obtained for different initial pressures and laser powers. Thermodynamic predictions of overpressures are also compared with experimental ones. Finally, ignition probabilities for different laser powers and gaseous atmospheres are investigated using a revised Langlie method.
机译:基于RDX的低脆弱性推进剂的点火和燃烧特性进行了实验研究。 使用激光二极管获得点火。 实验在圆柱形闭合体反应器中进行,用于不同的初始压力和初始推进剂质量在氮气下围绕大气的氩气。 为不同的初始压力和激光功率获得点火延迟,最大过压和传播速率。 与实验结果相比,过压的热力学预测也是比较的。 最后,使用修正的Langlie方法研究了不同激光功率和气态气氛的点火概率。

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