缆绳在国际空间站对抗系统中的实际应用

Cherice Moore, Randall Svetlik, Antony Williams
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引用次数: 3

摘要

美国国家航空航天局(NASA)在国际空间站(ISS)上使用运动对策来保持机组人员的健康,并对抗长时间太空飞行对人体的负面影响。大多数国际空间站运动对抗系统(CMS)设备严重依赖于使用纺织品和钢丝绳来传输电阻载荷并提供微重力环境下的稳定性。由于各种原因,包括模拟微重力环境进行测试的挑战和生命周期测试可用时间的限制,纺织品和钢丝绳对在轨计划和计划外维护时间产生了重大影响。因此,自2000年首次在国际空间站进行考察以来,持续的地面测试和在轨经验为材料选择、应用和设计技术提供了宝贵的数据和经验教训,以延长这些绳索的使用寿命。本文将回顾四种运动对抗系统——隔振稳定跑步机(TVIS)系统、隔振稳定循环计力器(CEVIS)系统、临时阻性运动装置(IRED)和高级阻性运动装置(ARED)——的发展和失效历史,以找出经验教训,以改进未来的系统。这些经验教训,加上在地面上进行的彻底测试,为未来的太空任务提供了减少维护时间和增加质量的前进道路。
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Practical applications of cables and ropes in the ISS countermeasures system
National Aeronautics and Space Administration (NASA) uses exercise countermeasures on the International Space Station (ISS) to maintain crew health and combat the negative effects of long-duration spaceflight on the human body. Most ISS exercise countermeasures system (CMS) equipment rely heavily on the use of textile and wire ropes to transmit resistive loads and provide stability in a microgravity environment. For a variety of reasons, including challenges in simulating microgravity environments for testing and limits on time available for life cycle testing, the textiles and wire ropes have contributed significantly to on-orbit planned and unplanned maintenance time. As a result, continued ground testing and on-orbit experience since the first expedition on the ISS in 2000 provide valuable data and lessons learned in materials selection, applications, and design techniques to increase service life of these ropes. This paper will present a review of the development and failure history of textile and wire ropes for four exercise countermeasure systems — the Treadmill with Vibration Isolation and Stabilization (TVIS) System, Cycle Ergometer with Vibration Isolation and Stabilization (CEVIS) System, Interim Resistive Exercise Device (IRED), and the Advanced Resistive Exercise Device (ARED) — to identify lessons learned in order to improve future systems. These lessons learned, paired with thorough testing on the ground, offer a forward path towards reduced maintenance time and up-mass for future space missions.
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