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Ignition and Growth Reactive Flow Modeling for RDX Based High Explosive

机译:RDX高爆炸的点火和生长反应性模型

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The ignition and growth model for shock initiation and detonation of solid explosives is applied to calculating the main features of detonation waves in RDX based high explosive in this paper. The parameters of unreacted equation of state as JWL form are fitted to shock Hugoniot data which measured by impedance match test. Cylinder tests with diameter 10mm and 25mm were used to identify the power of RDX based high explosive. According to the results of the numerical simulations of cylinder tests, parameters of JWL EOS for RDX based high explosive were calculated and corrected. Interface particle velocity history was measured by VISAR interferometer system. The reactive rate parameters of ignition and growth model are determined according to comparison with interface particle velocity history and calculation. Results show the ignition and growth model of RDX based high explosive could describe the reactive process, as consistency between experiments and calculations.
机译:休克启动和爆炸爆炸物的点火和生长模型应用于计算本文RDX高爆炸中爆炸波的主要特征。作为JWL形式的未反应方程的参数适用于阻抗匹配试验测量的休克Hugoniot数据。直径为10mm和25mm的圆柱试验用于识别基于RDX的高爆炸性的功率。根据圆柱试验数值模拟的结果,计算并校正了基于RDX的高爆炸的JWL EOS的参数。界面粒子速度历史通过Visar干涉仪系统测量。根据与界面粒子速度历史和计算的比较确定点火和生长模型的反应性参数。结果表明,基于RDX的高爆炸物的点火和生长模型可以描述反应过程,作为实验与计算之间的一致性。

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