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首页> 外文期刊>International journal of impact engineering >Particle launch to 19km/s for micro-meteoroid simulation using enhanced three-stage light gas gun hypervelocity launcher techniques
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Particle launch to 19km/s for micro-meteoroid simulation using enhanced three-stage light gas gun hypervelocity launcher techniques

机译:使用增强的三级轻气枪超高速发射器技术,将粒子以19km / s的速度发射到微流星体中

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Particle launch experiments were performed to study application of the enhanced hypervelocity launcher (EHVL), i.e. the third-stage addition to the two-stage gun, for launching micron to millimeter sized particulates at velocities unobtainable with a standard two-stage light gas gun launch. Three types of particles or fliers were tested along with several barrel designs. For micron scale particles fine-grain polycrystalline ceramics were impacted and fractured, launching particulate clouds at velocities of 15 km/s. Multiple titanium particles ~400 μm diameter embedded in plastic were "shotgun" launched to velocities of 10 km/s. Flier plates of 3 mm diameter by 1 mm thick Ti6Al4V were launched to 19 km/s. All experiments used a second-stage projectile with graded density facing impacting a flier in an impact generated acceleration reservoir. This paper describes the modification and adaptation of the Sandia EHVL to provide micrometeoroid simulation capabilities.
机译:进行了粒子发射实验,以研究增强型超高速发射器(EHVL)的应用,即两级喷枪的第三阶段添加,用于以标准的两级轻型气枪发射无法达到的速度发射微米至毫米大小的颗粒。测试了三种类型的颗粒或飞行物以及几种机筒设计。对于微米级的颗粒,细晶粒的多晶陶瓷受到冲击并破裂,以15 km / s的速度发射出颗粒云。将直径约400μm的多个钛颗粒嵌入塑料中,以“ km弹枪”发射,速度达到10 km / s。将直径为3毫米乘以1毫米厚的Ti6Al4V的飞行器板发射到19 km / s。所有实验都使用了带有分级密度的第二级弹丸,该弹丸面向冲击产生的加速度储层中的飞行器。本文介绍了桑迪亚EHVL的修改和改编,以提供微流星体仿真功能。

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