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Research on Key Techniques of the Verification and Testing System for Spacecraft Propulsion

机译:航天器推进力验证测试系统关键技术研究

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Electric propulsion is an important technology in the future space missions. The verification and testing system is mainly used for the manufacturers to fully understand the propulsion behavior in the most diverse conditions, and to indentify and eliminate potential failure modes to advance its validity and reliability, explore the applied potential for space missions. The paper presents a new verification and testing system for spacecraft propulsion and the key technologies needed to be developed are studied. The debugging data and research indicate that ultimate pressure of system is better than the 5.0×10~(-6)Pa. Both the cold plate used for xenon pumping and sputtering protective system get an excellent performance in system. The DSMC numerical simulation method is verified that is beneficial to the research of optimization design and plume effect of electric propulsion in future.
机译:电力推进是未来太空任务中的一项重要技术。验证和测试系统主要用于制造商,以充分了解在最多种条件下的推进行为,并识别和消除潜在的失效模式,以提高其有效性和可靠性,探索太空任务的应用潜力。本文提出了一种新的航天器推进验证测试系统,并研究了需要发展的关键技术。调试数据和研究表明,系统的极限压力优于5.0×10〜(-6)Pa。用于氙气泵送的冷却板和溅射保护系统在系统中均具有出色的性能。验证了DSMC数值模拟方法,有利于将来对电力推进系统的优化设计和羽流效应进行研究。

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