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Analysis of Bicycle Pitch-Over in a Controlled Environment

机译:受控环境下的自行车翻车问题分析

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In a controlled environment, bicycle crash tests were performed to analyze the dynamics of bicycle pitch-over, and the effect different test conditions would have on the motion of the bicyclist and the potential for serious head and neck injuries. The tests being evaluated within this paper will focus on a single size rider and bicycle with speed controlled between 19.3 and 22.5 kph (12.0 and 14.0 mph). The variables of the test conditions were the method of pitch-over initiation and configuration of the bicycle. Pitch-over was initiated by applying the front brake, impacting a rigid barrier, and inserting a dowel into the spokes of the front wheel. The bicycle configuration was varied by changing the frame, front fork, front wheel and stem. For all testing performed the event was captured on high speed video. As the testing progressed a force plate was added to measure the vertical loads and an impact plate was added to the barrier impacts to measure the horizontal impact loads. The data acquired from this series of tests provides insight into the dynamics of bicycle pitch-over, injury mechanisms, and the effect of bicycle component failure.
机译:在受控的环境中,进行了自行车碰撞测试,以分析自行车俯仰的动力,以及不同的测试条件对骑车人的运动和严重的头部和颈部受伤的可能产生的影响。本文中评估的测试将集中在速度控制在19.3至22.5 kph(12.0至14.0 mph)之间的单一尺寸的骑手和自行车上。测试条件的变量是自行车起步过渡和配置的方法。通过应用前制动器,撞击刚性障碍物并将销钉插入前轮的辐条来启动变距。通过改变车架,前叉,前轮和杆来改变自行车的配置。对于执行的所有测试,该事件都是在高速视频上捕获的。随着测试的进行,增加了一个测力板以测量垂直载荷,并且一个冲击板被加入了屏障冲击以测量水平冲击载荷。从这一系列测试中获得的数据可深入了解自行车翻倒的动力学,损伤机制以及自行车部件故障的影响。

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