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Planarity of shock wave from explosive plane wave generator

机译:来自爆炸平面波发生器的冲击波平面

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In a case of our small-scale experiments we are often facing the trouble with a non -planar shock wave front generated by a detonation of high explosive. For many applications in detonics and shock wave physics the shock front planarity is a necessary precondition. The cost and availability of commercial plane wave generators forced us to test alternatives that would lead to a cheap plane wave generator with minimal amount of explosive. In this paper we are briefly summarizing our results from several approaches tested to shape the detonation front. We began with measurement of detonation front curvature of bare A-IX-I charge in few different L/d ratios and studied the usability of the central part for various diameters. Then, a simple conical inert PMMA insert was tested followed by setup using accelerated aluminum cone. Most recently, we tried approach using inert metal ring inserted between two A-IX-I charges to create a planar shock front. The planarity was evaluated by ultra-high-speed imaging, passive optical system OPTIMEX and laser interferometry (PDV).
机译:在我们的小规模实验的情况下,我们通常面临由爆炸的非爆炸产生的非平板冲击波前面的麻烦。对于许多抗锯液和冲击波物理的应用,冲击前平面是必要的先决条件。商业平面波发生器的成本和可用性强制使用具有最小爆炸性的廉价平面波发生器的替代品。在本文中,我们将简要概述我们的几种方法,以塑造爆炸前方的几种方法。我们开始测量裸A-IX-I电荷的爆炸前曲率,在很少不同的L / D比例中,并研究了中心部分的可用性,以获得各种直径。然后,测试简单的锥形惰性PMMA插入件,然后使用加速铝锥进行设置。最近,我们尝试使用惰性金属环插入两个A-IX-I电荷,以创建平面震动前沿。通过超高速成像,无源光学系统OPTIVEX和激光干涉测量(PDV)评估平面。

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