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Validity of a device designed to measure braking power in bicycle disc brakes

机译:设计用于测量自行车盘式制动器中制动功率的设备的有效性

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Real-world cycling performance depends not only on exercise capacities, but also on efficiently traversing the bicycle through the terrain. The aim of this study was to determine if it was possible to quantify the braking done by a cyclist in the field. One cyclist performed 408 braking trials (348 on a flat road; 60 on a flat dirt path) over 5 days on a bicycle fitted with brake torque and angular velocity sensors to measure brake power. Based on Newtonian physics, the sum of brake work, aerodynamic drag and rolling resistance was compared with the change in kinetic energy in each braking event. Strong linear relationships between the total energy removed from the bicycle-rider system through braking and the change in kinetic energy were observed on the tar-sealed road (r(2)=0.989; p0.0001) and the dirt path (r(2)=0.952; p0.0001). T-tests revealed no difference between the total energy removed and the change in kinetic energy on the road (p=0.715) or dirt (p=0.128). This study highlights that brake torque and angular velocity sensors are valid for calculating brake power on the disc brakes of a bicycle in field conditions. Such a device may be useful for investigating cyclists' ability to traverse through various terrains.
机译:现实世界的骑自行车性能不仅取决于运动能力,还取决于有效地穿过地形上的自行车。本研究的目的是确定是否有可能通过现场骑自行车的人量式化制动。一个骑自行车的人在装有制动扭矩和角速度传感器的自行车上进行了408个制动试验(在平坦的道路上,在平坦的污垢路径上)超过5天。基于牛顿物理学,与每个制动事件中动能的变化进行了比较了制动工作,空气动力阻力和滚动阻力的总和。在焦油密封的道路上观察到从自行车骑手系统中除去的总能量之间的线性关系,并在焦油密封道路上观察到动能的变化(R(2)= 0.989; p& 0.0001)和污垢路径(r(2 )= 0.952; p& 0.0001)。 T-Tests揭示了除去的总能量之间的差异,道路上的动能变化(P = 0.715)或污垢(P = 0.128)。该研究突出显示制动扭矩和角速度传感器对于在现场条件下计算自行车圆盘制动器的制动力。这种装置可用于研究骑自行车的人穿过各种地形的能力。

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