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Development of a Landing Leg with Active Buffering and Anchoring Functions Applied to the Small Body Landing Mechanism

机译:具有主动缓冲和锚定功能的着陆脚的开发,应用于小飞机着陆机构

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It is microgravity on the small body, and its medium is unknown and diverse. The lander is easy to rebound or tip over when landing and easy to drift away after landing. Thus, the lander should have the functions such as cushioning, terrain adapting and anchoring. At present, the moon and Mars landers mostly use honeycomb aluminum to achieve passive buffering. Honeycomb aluminum has good buffering effect under heavy load. This paper proposes an electromagnetic damping and anchoring leg for the small body lander. The leg integrates the folding mechanism and the buffering mechanism as a part and can sense the landing force. This force signal is used to realize the buffering function of the landing leg. An ultrasonic drill is attached at the end of the landing leg to realize anchoring after landing. Landing and anchoring performances of the landing leg are tested.
机译:它是小物体上的微重力,其介质未知且多种多样。着陆器着陆时易于反弹或翻倒,着陆后易于漂移。因此,着陆器应具有减震,地形适应和锚定等功能。目前,月球和火星着陆器主要使用蜂窝铝来实现被动缓冲。蜂窝铝在重载下具有良好的缓冲效果。本文提出了一种用于小型着陆器的电磁阻尼和锚固支腿。腿部将折叠机构和缓冲机构集成为一个部分,并且可以感应到着陆力。该力信号用于实现着陆脚的缓冲功能。超声波钻安装在着陆脚的末端,以实现着陆后的锚固。测试着陆腿的着陆和锚固性能。

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