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Research on Near Space Plasma Vacuum Environmental Simulation Technology

机译:近空间等离子体真空环境模拟技术研究

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The operation reliability of spacecraft in orbitis affected by the interaction with space plasma, research on the space enviroment by advanced testing method is important. It is costly to carry out research and analysis with space flight. Therefore, tests using ground vacuum environment simulation system are of significance. This paper proposed the structure design, simulation analysis and numerical calculation methods for the three subsystems of plasma environment simulation system, including vacuum vessel, vacuum acquisition and vacuum measurement and control. The simulation results show that the maximum stress of the vacuum vessel is 113.2MPa , and the maximum deformation is 0.59mm , at the same time, vacuum technology index, structural stability and human-machine interaction performance of the system can meet the experimental research requirement.
机译:航天器在与空间等离子相互作用的影响下,在球体内的运行可靠性,采用先进的测试方法研究空间环境具有重要意义。用太空飞行进行研究和分析是昂贵的。因此,使用地面真空环境模拟系统进行测试具有重要意义。提出了等离子体环境模拟系统三个子系统的结构设计,模拟分析和数值计算方法,包括真空容器,真空采集和真空测量与控制。仿真结果表明,真空容器的最大应力为113.2MPa,最大变形为0.59mm,同时,该系统的真空技术指标,结构稳定性和人机交互性能均满足实验研究的要求。 。

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