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EJECTA PARTICLE SIZE DISTRIBUTIONS FOR SHOCK-LOADED Sn AND Al TARGETS

机译:突击加载的锡和铝靶的弹射颗粒大小分布

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When a shock wave interacts at the surface of a metal sample "ejected matter" (ejecta) can be emitted from the surface. The mass, size, shape, and velocity of the ejecta varies depending on the initial shock conditions and the material properties of the target. To understand this phenomena, experiments have been conducted at the Pegasus Pulsed Power Facility (PPPF) located at Los Alamos National Laboratory (LANL). The facility is used to implode cylinders to velocities of many mm/μsec. The driving cylinder impacts a smaller target cylinder where shock waves of a few hundreds of kilobars can be reached and ejecta formation proceeds. The ejecta particle sizes are measured for shock loaded Sn and Al metal samples using an in-line Fraunhofer holography technique. The distributions will be compared to calculations from 3 and 2 dimensional percolation theory.
机译:当冲击波在金属样品的表面相互作用时,可以从该表面发射“喷射物”(喷射物)。弹射器的质量,大小,形状和速度会根据初始冲击条件和靶材的材料特性而变化。为了了解这种现象,已经在位于洛斯阿拉莫斯国家实验室(LANL)的飞马脉冲电源实验室(PPPF)进行了实验。该设备用于将圆柱内爆到许多毫米/微秒的速度。驱动汽缸撞击较小的目标汽缸,在那里可以达到几百千巴的冲击波,并继续喷射。使用在线Fraunhofer全息技术测量冲击载荷下的Sn和Al金属样品的喷射粒径。将这些分布与3维和2维渗滤理论的计算结果进行比较。

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