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火星巡視器鼓形車輪仿生設計與性能分析
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國家自然科學基金項目(51275199)和吉林省科技發(fā)展計劃項目(20140101074JC)


Bionic Design and Performance Analysis of Drum Shaped Wheel of Mars Rover
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    摘要:

    以善于沙地奔跑的鴕鳥的二趾足為仿生原型,,利用工程仿生學原理,設計一種高通過性的仿生越沙鼓形輪面車輪,。以與火星壤近似的松軟沙土為試驗材料,,利用車輪-土壤土槽測試系統(tǒng),,以輪轍,、掛鉤牽引力和沉陷量為試驗指標,對仿生鼓形輪面車輪和普通輪面車輪的通過性能進行了對比分析,。結(jié)果表明,,當滑轉(zhuǎn)率超過0.85時,普通鼓形輪面比仿生鼓形輪面輪轍的堆積現(xiàn)象明顯,,并且出現(xiàn)明顯打滑空轉(zhuǎn)現(xiàn)象,。在相同試驗條件下,當滑轉(zhuǎn)率小于0.42時,,普通鼓形輪面車輪的掛鉤牽引力稍大于仿生鼓形輪面車輪,,當滑轉(zhuǎn)率大于0.42時,仿生鼓形輪面車輪的掛鉤牽引力明顯大于普通鼓形輪面車輪,。仿生鼓形輪面車輪和普通鼓形輪面車輪的最大掛鉤牽引力分別為11.6N和2.6N,。滑轉(zhuǎn)率對于普通鼓形輪面車輪的沉陷量影響較小,,沉陷量基本保持在約35mm,,而隨著滑轉(zhuǎn)率的增大,仿生鼓形輪面車輪沉陷量呈現(xiàn)緩慢增大趨勢,。

    Abstract:

    It is important to enhance mobility performance of the Mars rover wheel in soft terrain. The didactyl foot, which is the key part of ostrich foot possessing the excellent running ability on sand, was regarded as the bionic prototype. According to the principle of engineering bionic, the wheel with bionic drum shaped surface moving on sand with high mobility performance was designed. A kind of Mars soil stimulants was selected as experimental material. The wheel-soil bin test system was adopted to test the tractive trafficability of ordinary drum shaped surface wheel and bionic drum shaped surface wheel. The rut morphology, drawbar pull and sinkage were regarded as evaluation indicators. Results showed that when the slip-rotation ratio was over 0.85, the rut accumulation phenomenon of ordinary drum shaped wheel was more serious than that of bionic drum shaped wheel. Under the same experimental conditions, when slip-rotation ratio was less than 0.42, the drawbar pull of ordinary drum shaped wheel was slightly larger than that of the bionic drum shaped wheel. When the slip-rotation ratio was over 0.42, the drawbar pull of the bionic drum shaped wheel was superior to the ordinary drum shaped wheel. The maximum drawbar pulls of bionic drum shaped wheel and ordinary drum shaped wheel were 11.6N and 2.6N, respectively. The slip-rotation ratio had small influence on sinkage of the ordinary drum shaped wheel, and the value of sinkage was about 35mm. However, the sinkage of bionic drum shaped wheel was increased with the increase of slip-rotation ratio. This research provided a design way for enhancing the mobility performance of the Mars rover in soft terrain.

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張銳,吉巧麗,楊明明,李建橋.火星巡視器鼓形車輪仿生設計與性能分析[J].農(nóng)業(yè)機械學報,2016,47(8):311-316. Zhang Rui, Ji Qiaoli, Yang Mingming, Li Jianqiao. Bionic Design and Performance Analysis of Drum Shaped Wheel of Mars Rover[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(8):311-316.

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  • 收稿日期:2016-01-05
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  • 在線發(fā)布日期: 2016-08-10
  • 出版日期: 2016-08-10
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