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Characteristics of lug-soil interaction forces acting on a rotating lug in sandy soil

机译:沙土旋转凸耳作用的凸耳土相互作用的特征

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To improve the mobility of wheeled robots on loose sandy terrain, lugs (i.e., grousers) are attached to the surface of each wheel. Unlike existing studies that focus on the effects of lug shape (e.g. height and width) on lug-soil interaction forces, this study involved experimental and quantitative analyses to investigate the effects of parameters such as inclination angle, sinkage length, and moving direction angle of a lug that is translationally moving on sandy ground. In this study, a single lug is actuated to rotate on a sandy testbed and characteristics of the lug-soil interaction during the rotational motion are quantitatively investigated. Based on the experimental results, the effects of angular speed, lug sinkage length and cumulative deformation of the soil on lug-soil reaction forces are discussed. Conclusions from this study would be useful for understanding the lug-soil interaction mechanism for a lug that is performing arbitrary planar motion on sandy terrain.
机译:为了改善松散的桑迪地形上的轮式机器人的移动性,凸耳(即,Frousers)附着在每个车轮的表面上。与现有的研究相比,专注于凸耳形状(例如高度和宽度)对凸耳土相互作用力的影响,该研究涉及实验和定量分析,以研究倾斜角度,下沉长度和移动方向角度的参数的影响一个翻译在沙地上的凸耳。在该研究中,单个凸耳被致动以旋转在砂质测试平面上,并且定量地研究了旋转运动期间的凸耳土相互作用的特性。基于实验结果,讨论了角度速度,凸起下沉长度和土壤累积变形对凸耳土反应力的影响。本研究的结论对于理解凸耳的凸耳土相互作用机制对于在桑迪地形上进行任意平面运动的凸耳土相互作用机制。

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