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An Improved Impactor Design for Eliminating Spallation in High-Impedance Flyers During Hypervelocity Launch

机译:一种改进的撞击器设计,用于消除超高速飞行过程中高阻抗飞行物的飞散

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摘要

Spallation in a high-impedance tantalum flyer was confirmed by using a specially designed hypervelocity launch (HVL) experiment, thereby indicating that the conventional flyer was unsuitable for equation of state (EOS) research on materials under ultra-high pressure. Based on the analysis and interpretation of the experimental data and the spallation's reproduction via a high-fidelity detonation and shock (HDS) wave code, two possible methods to eliminate the spallation were proposed: (1) changing the impactor structure, which could greatly reduce spallation, and (2) altering the impactor material, which could completely eliminate the remaining spallation. We conducted a set of HVL experiments with an improved impactor design in which a high-impedance tantalum flyer was accelerated up to 10 km/s, and no spallation was found, demonstrating the effectiveness of the improved method for performing EOS research on materials under pressures of terapascals loaded by a three-stage light gas gun.
机译:通过使用特殊设计的超高速发射(HVL)实验确认了高阻抗钽飞行器中的散裂,从而表明传统飞行器不适用于超高压材料的状态方程(EOS)研究。基于对实验数据的分析和解释以及通过高保真爆震和冲击波(HDS)波动代码再现散裂现象,提出了两种消除散裂现象的可能方法:(1)改变撞击器的结构,可以大大减少撞击器的结构剥落,以及(2)更改冲击器材料,这可以完全消除剩余的剥落。我们进行了一系列具有改进的撞击器设计的HVL实验,其中高阻抗钽飞行器被加速到10 km / s,没有发现散裂,证明了改进的方法在压力下对材料进行EOS研究的有效性三级轻气枪装载的万亿帕斯卡。

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