一种基于柔性结构的抛掷机器人

Wang Wei, Zhan Chaoyue
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引用次数: 0

摘要

低成本、微型化、高抗冲击力的设计与制造是目前研究的热点之一。为了提高投掷机器人的抗冲击能力,提出了一种基于柔性结构的设计方案,该方案由柔性铰链和结构板组成。柔性结构可以通过橡胶铰链和塑料板的变形来吸收大部分的冲击能量。这些廉价的柔性结构可以轻松灵活地组合在一起形成机器人平台。因此,机器人的整体成本可以降低很多。大量实验表明,基于柔性结构的低成本抛掷机器人,其重量为1.2kg,能够承受从6m高度落下时的冲击载荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel thrown robot based on flexible structures
The research on thrown mobile robots, which attract more attentions recently, are focused on the design and manufacture of low-cost, miniature, and high tolerance to the impact forces. This paper presents a novel design based on flexible structures, which is composed of flexure hinges and structure boards, to improve the anti-impact capability of a thrown robot. The flexible structures can absorb most of the shock energy via deformation of the rubber hinges and the plastic boards. The cheap flexible structures can be combined together to form a robot platform easily and flexibly. Therefore, the overall cost of the robot can be reduced a lot. Plenty of experiments showed that the low-cost thrown robot based on flexible structures, which was 1.2kg weight, could sustain the impact loading when being dropped down from 6m height.
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