会议论文详细信息
31st International Conference on Equations of State for Matter
Two-stage light-gas magnetoplasma accelerator for hypervelocity impact simulation
Khramtsov, P.P.^1 ; Vasetskij, V.A.^1 ; Makhnach, A.I.^1 ; Grishenko, V.M.^1 ; Chernik, M Yu^1 ; Shikh, I.A.^1 ; Doroshko, M.V.^1
Heat and Mass Transfer Institute, National Academy of Sciences of Belarus, P Brovka Street 15, Minsk
220072, Belarus^1
关键词: Accelerated particles;    Acceleration method;    High speed impact;    Hypervelocity impacts;    Macro-particles;    Measuring method;    Micrometeoroid and space debris;    Projectile velocity;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/774/1/012056/pdf
DOI  :  10.1088/1742-6596/774/1/012056
来源: IOP
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【 摘 要 】

The development of macroparticles acceleration methods for high-speed impact simulation in a laboratory is an actual problem due to increasing of space flights duration and necessity of providing adequate spacecraft protection against micrometeoroid and space debris impacts. This paper presents results of experimental study of a two-stage light- gas magnetoplasma launcher for acceleration of a macroparticle, in which a coaxial plasma accelerator creates a shock wave in a high-pressure channel filled with light gas. Graphite and steel spheres with diameter of 2.5-4 mm were used as a projectile and were accelerated to the speed of 0.8-4.8 km/s. A launching of particle occurred in vacuum. For projectile velocity control the speed measuring method was developed. The error of this metod does not exceed 5%. The process of projectile flight from the barrel and the process of a particle collision with a target were registered by use of high-speed camera. The results of projectile collision with elements of meteoroid shielding are presented. In order to increase the projectile velocity, the high-pressure channel should be filled with hydrogen. However, we used helium in our experiments for safety reasons. Therefore, we can expect that the range of mass and velocity of the accelerated particles can be extended by use of hydrogen as an accelerating gas.

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