The effect of caster wheel diameter and mass distribution on drag forces in manual wheelchairs.

Rene Zepeda, Franco Chan, Bonita Sawatzky
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引用次数: 11

Abstract

This study proposes a way to reduce energy losses in the form of rolling resistance friction during manual wheelchair propulsion by increasing the size of the front caster wheels and adjusting the weight distribution. Drag tests were conducted using a treadmill and a force transducer. Three different casters diameter (4 in., 5 in., and 6 in.) and six different mass distribution combinations (based on percentage of total weight on the caster wheels) were studied. A two-way analysis of variance test was performed to compare caster size and weight distribution contribution with drag force of an ultralight wheelchair. The 4 in. caster contributed significantly more drag, but only when weight was 40% or greater over the casters. Weight distribution contributed more to drag regardless of the casters used.

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脚轮直径和质量分布对手动轮椅拖曳力的影响。
本研究提出一种通过增大前脚轮尺寸和调整重量分布来减少手动轮椅推进过程中滚动阻力摩擦形式的能量损失的方法。使用跑步机和力传感器进行阻力测试。三个不同的脚轮直径(4英寸)。5英寸。研究了六种不同的质量分布组合(基于脚轮总重量的百分比)。采用双向方差分析检验比较脚轮尺寸和重量分布对超轻型轮椅阻力的贡献。4英寸。脚轮产生了更大的阻力,但只有当重量超过脚轮的40%或更大时。无论使用何种脚轮,重量分布对阻力的贡献都更大。
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