...
首页> 外文期刊>Journal of biomechanical engineering. >The Impact of the Human Body Position Changes During Wheelchair Propelling on Motion Resistance Force: A Preliminary Study
【24h】

The Impact of the Human Body Position Changes During Wheelchair Propelling on Motion Resistance Force: A Preliminary Study

机译:在轮椅上推动运动阻力的轮椅上改变人体位置的影响:初步研究

获取原文
获取原文并翻译 | 示例
           

摘要

The aim of this research was to analyze the impact of the human body position changes caused by propelling a wheelchair with the pushrim propulsion on the value of motion resistance force. The discussed research works are in progress; therefore, the presented results should be treated as preliminary. The research was carried out in the group of six volunteers propelling a wheelchair of which frame was inclined, in respect to the horizontal plane, under the angle of 0 deg, 7 deg, and 14 deg. The area of the position variability of the human body center of gravity (COG) and the coefficients of wheelchair rolling resistance have been determined. Based on the measurements conducted, rolling resistance force F-T and motion resistance force F-R have been defined for three values of frame inclination angle. The determined force of rolling resistance F-t depended on the location of the COG of the human body and the value of the coefficients of rolling resistance of the front and rear wheels of a wheelchair. This force was a component of the resistance to motion F-R, which also took into account the influence of gravity resulting from the inclination of the wheelchair on an inclined plane. For the tested inclination angles relative to the horizontal plane, the rolling resistance force ranged from 9.82 N to 22.81 N. Analyzing the variability of the rolling resistance force F-T, it was found that for the final phase of the driving motion, it increased by 36% for the inclination angle of 0 deg and 43% for the inclination angle of 7 deg. Its increase was 48% for the inclination angle of 14 deg in relation to the human body position for the beginning of the driving motion. In the case of measuring the value of the resistance to motion F-R, it was observed that, depending on the angle of the incline of the wheelchair, it ranged from 14.69 N to 256.33 N. The measurements conducted enabled the derivation of an analytical model for determining rolling resistance force depending on the position of the human body COG and the wheelchair inclination angle. The conducted research demonstrated the impact of the COG position on the changes of motion resistance force, thus expanding the state of knowledge, introducing a new parameter which, like a surface type and wheel type, affects motion resistances.
机译:本研究的目的是分析使用pushrim推进器推动轮椅时,人体位置变化对运动阻力值的影响。讨论的研究工作正在进行中;因此,提出的结果应视为初步结果。这项研究由六名志愿者组成,他们推动轮椅,轮椅的框架相对于水平面倾斜,角度分别为0度、7度和14度。人体重心(COG)的位置变化区域和轮椅滚动阻力系数已经确定。根据测量结果,定义了三个机架倾角值的滚动阻力F-T和运动阻力F-R。确定的滚动阻力F-t取决于人体齿轮的位置和轮椅前后轮滚动阻力系数的值。该力是运动阻力F-R的一个组成部分,该阻力还考虑了轮椅在斜面上倾斜产生的重力影响。对于相对于水平面的测试倾角,滚动阻力范围为9.82 N至22.81 N。分析滚动阻力F-T的可变性,发现在驱动运动的最后阶段,倾斜角度为0度时增加了36%,倾斜角度为7度时增加了43%。相对于驾驶动作开始时的人体位置,倾斜角度为14度时增加了48%。在测量运动阻力F-R值的情况下,观察到,根据轮椅的倾斜角度,其范围在14.69 N到256.33 N之间。进行的测量能够推导出一个分析模型,用于根据人体齿轮的位置和轮椅倾斜角度确定滚动阻力。所进行的研究证明了齿轮位置对运动阻力变化的影响,从而扩展了知识状态,引入了一个新参数,如曲面类型和车轮类型,影响运动阻力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号