首页> 外文会议>International Symposium on Combustion; 20060805-11; University of Heidelberg(DE) >Effect of debris fragments on direct initiation of spherical detonation waves in stoichiometric oxygen/hydrogen mixtures
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Effect of debris fragments on direct initiation of spherical detonation waves in stoichiometric oxygen/hydrogen mixtures

机译:碎片碎片对化学计量氧气/氢气混合物中球形爆轰波直接引发的影响

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Paper reports a result of experiments of spherical shock waves generated by explosions of micro-explosives weighing from 1 to 10 mg ignited by the irradiation of Q-switched laser beam and direct initiation to a spherical detonation wave in stoichiometric oxygen/hydrogen mixtures at 10-200 kPa. We visualized the interaction of debris particles ejected micro-explosives' surface with shock waves by using double exposure holographic interferometry and high-speed video recording. Upon explosion, minute inert debris launched supersonically from micro-charge surface precursory to shock waves initiated spherical detonation waves. To examine this effect we attached 0.5-2.0 μm diameter SiO_2 particles densely on micro-explosive surfaces and observed that the supersonic particles, significantly promoted the direct initiation of spherical detonation waves. The domain and boundary of detonation wave initiations were experimentally obtained at various initial pressures and the amount of micro-charges.
机译:论文报道了由调Q激光束辐照点燃的重量为1至10 mg的微炸药爆炸产生的球形冲击波的实验结果,并在化学计量比的氧气/氢气混合物中于10-℃直接引发球形爆炸波200 kPa。通过使用两次曝光全息干涉仪和高速视频记录,我们可视化了喷射微炸药表面的碎屑颗粒与冲击波之间的相互作用。爆炸后,微小的惰性碎屑会从微炸药表面先驱以超声波的形式向冲击波发射,从而引发球形爆炸波。为了检验这种效果,我们将直径为0.5-2.0μm的SiO_2颗粒紧密地附着在微爆炸表面上,并观察到超音速颗粒显着促进了球形爆轰波的直接引发。在各种初始压力和微装药量下,通过实验获得了爆轰波起爆的范围和边界。

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