可变形麦克纳姆轮机构设计与性能分析

Design and Performance Analysis of Deformable McNamum Wheel Mechanism

  • 摘要: 为克服传统麦克纳姆轮高能耗、难适应崎岖地形的不足,基于可变形麦克纳姆轮的设计方案,论述了轮毂轴与辊子轴在0°和45°角间灵活切换原理,进行运动学建模与性能分析。结果显示,45°状态时全向移动、灵活性高,适合狭窄通道;0°状态能耗低、可高速行驶,适用于复杂地形。经Adams仿真验证及实验表明,该设计提升了行驶效率、降低了能耗,为其在复杂环境应用拓宽了前景。

     

    Abstract: To overcome the shortcomings of traditional Mecanum wheels, such as high energy consumption and difficulty in adapting to rough terrains, this paper designs a deformable Mecanum wheel. The principle of flexible switching between 0° and 45° angles of the hub shaft and roller shaft is expounded, and kinematic modeling and performance analysis are conducted. The results show that in the 45° state, it has omnidirectional movement and high flexibility, suitable for narrow channels; in the 0° state, it has low energy consumption and can travel at high speed, suitable for complex terrains. The Adams simulation verification and experiments show that this design improves the driving efficiency and reduces energy consumption, broadening its application prospects in complex environments.

     

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