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首页> 外文期刊>Journal of Spacecraft and Rockets >Inflatable Structure for a Three-Meter Reflectarray Antenna
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Inflatable Structure for a Three-Meter Reflectarray Antenna

机译:三米反射阵列天线的充气结构

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The application of inflatable/rigidizable structures technology has become feasible for near-term large space antennas. The development of one of such application of a 3-m Ka-band reflectarray antenna is discussed. This antenna employs the beam scanning and circular polarization technology that allows the use of a flat surface instead of a parabolic antenna surface. Structurally, a flat surface is comparatively easier to fabricate, package, and maintain than a curved parabolic surface. The development of this antenna was also supported by an innovative inflatable/self-rigidizable boom technology, namely spring tape reinforced aluminum laminate boom. A spring tape reinforced aluminum laminate boom automatically rigidizes after it is deployed by inflation pressure. The rigidization of this boom requires no space power, curing agent, or other added-on rigidization devices. Small damage caused by micrometeoroid impacts will not affect structural performance of the boom, and inflation air is no longer needed after the boom is deployed. Detailed mechanical design, dynamic analysis, and deployment demonstration of the antenna are discussed.
机译:充气/刚性结构技术的应用已成为近期大空间天线的可行方案。讨论了3 m Ka波段反射阵列天线这种应用之一的发展。该天线采用波束扫描和圆极化技术,该技术允许使用平坦表面代替抛物面天线表面。从结构上讲,平坦的表面比弯曲的抛物面更容易制造,包装和维护。这种天线的发展还受到创新的充气/可自行调节的吊杆技术的支持,即弹簧带增强铝层压板吊杆。弹簧带增强的铝层压板动臂在膨胀压力作用下自动硬化。动臂的加固不需要空间动力,固化剂或其他附加的加固装置。由微小流线型撞击造成的小损坏不会影响动臂的结构性能,并且在动臂部署后不再需要充气空气。讨论了天线的详细机械设计,动态分析和部署演示。

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