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Discussion on validity of lugged wheel model and evaluation method

机译:托轮模型的有效性及评估方法探讨

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Soft soil covers planetary surfaces, so the wheel of a planetary rover easily slips and gets stuck. In order to prevent increase in the slip and getting stuck, the wheel can have lugs that have a shape of a paddle to improve the wheel force. There have been some studies about the influence of the lugs. However, design method of an effective lug has not been studied well yet. Since terramechanics-based wheel models have been considered with a flat wheel surface, those models based on terramechanics are not applicable to the lugged wheel. In this research, in order to establish the design method of the effective lugs, a lugged wheel model was discussed and proposed regarding the variation of the shear characteristics. The variation of shear characteristics is indicated by a shear deformation modulus. The lugged wheel model is based on the shear deformation modulus varied by the lug design. In this paper, the simulation was performed to verify the validity of the lugged wheel model, and it was confirmed that the model could formulate the performance of the wheel traversability. Moreover, the wheel experimental device was described to understand the traversability of the lugged wheel. The evaluation method of the proposed lugged shear deformation model was also considered.
机译:柔软的土壤覆盖着行星表面,因此行星流动站的车轮很容易打滑并卡住。为了防止增加打滑和卡住,车轮可以具有凸耳,该凸耳具有桨状形状以提高车轮力。已经有关于凸耳的影响的一些研究。但是,尚未对有效的接线片的设计方法进行很好的研究。由于已经考虑了基于地形力学的车轮模型具有平坦的车轮表面,因此基于地形力学的那些模型不适用于拖轮。在这项研究中,为了建立有效的凸耳的设计方法,针对剪切特性的变化,讨论并提出了一个凸耳轮模型。剪切特性的变化由剪切变形模量表示。托轮模型基于通过凸耳设计而变化的剪切变形模量。本文通过仿真验证了拖轮模型的有效性,并证实了该模型可以表述轮转性的性能。此外,描述了车轮实验装置以了解拖轮的可移动性。还考虑了拟议的剪切剪切变形模型的评估方法。

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