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轮椅脚轮在运动场地表面滚动阻力导致的功率损耗。

Wheelchair caster power losses due to rolling resistance on sports surfaces.

作者信息

Pomarat Z, Marsan T, Faupin A, Landon Y, Watier B

机构信息

Laboratoire JAP2S, Université de Toulon, Toulon, France.

LAAS-CNRS, CNRS, UPS, Université de Toulouse, Toulouse, France.

出版信息

Disabil Rehabil Assist Technol. 2025 May;20(4):1176-1182. doi: 10.1080/17483107.2024.2406450. Epub 2024 Sep 27.

Abstract

The gross mechanical efficiency of the manual wheelchair propulsion movement is particularly low compared to other movements. The energy losses in the manual wheelchair propulsion movement are partly due to energy losses associated with the wheelchair, and especially to the rolling resistance of the wheels. The distribution of mass between the front rear wheels and the caster wheels has a significant impact on the rolling resistance. The study of the caster wheels cannot therefore be neglected due to their involvement in rolling resistance. Thus, this study aimed to evaluate the power dissipated due to rolling resistance by different caster wheels, at different speeds and under different loadings on various terrains. Four caster wheels of different shapes, diameters, and materials were tested on two surfaces representative of indoor sports surfaces at four different speeds and under four loadings. The results showed a minimal dissipated power of W for the skate caster, on the parquet, at 0.5 m/s and under a loading of 50 N. The maximal mean power dissipated was W still for the skate caster, but on the Taraflex, at 1.5 m/s and under loading of 200 N. The power dissipated on the parquet was lower than the one on the Taraflex. The Spherical and Omniwheel caster wheels dissipated less power than the two other casters. This study showed that caster wheels cannot be neglected in the assessment of gross mechanical efficiency, particularly in light of the power dissipated by athletes during propulsion.

摘要

与其他运动相比,手动轮椅推进运动的总体机械效率特别低。手动轮椅推进运动中的能量损失部分归因于与轮椅相关的能量损失,尤其是车轮的滚动阻力。前后轮与脚轮之间的质量分布对滚动阻力有重大影响。因此,由于脚轮与滚动阻力有关,对其研究不能忽视。因此,本研究旨在评估不同脚轮在不同速度和不同负载下在各种地形上因滚动阻力而耗散的功率。在代表室内运动场地的两种表面上,以四种不同速度和四种负载对四个形状、直径和材料不同的脚轮进行了测试。结果表明,对于溜冰鞋脚轮,在木地板上,速度为0.5米/秒且负载为50牛时,耗散功率最小为W。耗散的最大平均功率仍然是溜冰鞋脚轮的,但在塔拉夫莱克斯地板上,速度为1.5米/秒且负载为200牛时。在木地板上耗散的功率低于在塔拉夫莱克斯地板上的功率。球形脚轮和全方位脚轮耗散的功率比其他两种脚轮少。这项研究表明,在评估总体机械效率时,脚轮不能被忽视,特别是考虑到运动员在推进过程中耗散的功率。

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