首页> 外文会议>56th International Astronautical Congress 2005 vol.9 >CRITICAL TECHNOLOGIES FOR THE DEVELOPMENT OF FUTURE SPACE ELEVATOR SYSTEMS
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CRITICAL TECHNOLOGIES FOR THE DEVELOPMENT OF FUTURE SPACE ELEVATOR SYSTEMS

机译:未来空间电梯系统开发的关键技术

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A space elevator is a tether structure extending through geosynchronous earth orbit (GEO) to the surface of the earth. Its center of mass is in GEO such that it orbits the earth in sync with the earth's rotation. In 2004 and 2005, the NASA Marshall Space Flight Center and the Institute for Scientific Research, Inc. worked under a cooperative agreement to research the feasibility of space elevator systems, and to advance the critical technologies required for the future development of space elevators for earth to orbit transportation. The discovery of carbon nanotubes in the early 1990's was the first indication that it might be possible to develop materials strong enough to make space elevator construction feasible. This report presents an overview of some of the latest NASA sponsored research on space elevator design, and the systems and materials that will be required to make space elevator construction possible. In conclusion, the most critical technology for earth-based space elevators is the successful development of ultra high strength carbon nanotube reinforced composites for ribbon construction in the 100GPa range. In addition, many intermediate technology goals and demonstration missions for the space elevator can provide significant advancements to other spaceflight and terrestrial applications.
机译:太空升降机是一种系绳结构,它通过地球同步地球轨道(GEO)延伸到地球表面。它的质心位于GEO中,因此它与地球的自转同步绕地球旋转。在2004年和2005年,美国国家航空航天局马歇尔太空飞行中心和科学研究所公司达成合作协议,研究太空电梯系统的可行性,并推进未来地球太空电梯发展所需的关键技术。轨道运输。在1990年代初期发现碳纳米管是第一个迹象,表明有可能开发出足够坚固的材料以使太空电梯的建造成为可能。本报告概述了美国宇航局最新资助的有关太空电梯设计的一些研究,以及使太空电梯建设成为可能所需的系统和材料。总之,土基太空电梯最关键的技术是成功开发用于100GPa范围内的薄带构造的超高强度碳纳米管增强复合材料。此外,太空电梯的许多中间技术目标和演示任务可以为其他太空飞行和地面应用带来重大进步。

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