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Dynamic ignition regime of condensed system by radiate heat flux

机译:辐射热通量通过凝聚系统的动态点火制度

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The main ignition characteristics of high-energy materials are the ignition time and critical heat flux allowing evaluation of the critical conditions for ignition, fire and explosive safety for the test solid propellants. The ignition process is typically studied in stationary conditions of heat input at constant temperature of the heating surface, environment or the radiate heat flux on the sample surface. In real conditions, ignition is usually effected at variable time-dependent values of the heat flux. In this case, the heated layer is formed on the sample surface in dynamic conditions and significantly depends on the heat flux change, i.e. increasing or decreasing falling heat flux in the reaction period of the propellant sample. This paper presents a method for measuring the ignition characteristics of a high-energy material sample in initiation of the dynamic radiant heat flux, which includes the measurement of the ignition time when exposed to a sample time varying radiant heat flux given intensity. In case of pyroxyline containing 1 wt. % of soot, it is shown that the ignition times are reduced by 20-50 % depending on the initial value of the radiant flux density in initiation by increasing or decreasing radiant heat flux compared with the stationary conditions of heat supply in the same ambient conditions.
机译:高能量材料的主要点火特性是点火时间和临界热通量,允许评估试火,火灾和爆炸安全的临界条件,用于测试固体推进剂。火点火过程通常在加热表面,环境或辐射热通量的恒定温度下的热输入的静止条件下研究。在真实条件下,点火通常在热通量的可变时依赖性值下进行。在这种情况下,在动态条件下在样品表面上形成加热层,并且显着取决于热通量变化,即在推进剂样品的反应时段中增加或减少下降热量。本文介绍了一种用于测量高能材料样品在发起动态辐射热通量的点火特性的方法,该方法包括在给定强度的样本时间变化辐射热通量时的点火时间的测量。在含有1wt的焦素内的情况下。烟灰的百分比,显示点火次数根据在相同的环境条件下的透射热通量的开始或减少辐射热通量时,根据辐射通量密度的初始值降低20-50% 。

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