Objective: The objective of this study was to examine the influence of bicycle design and speed on the head impact when suffering from a single-bicycle crash, and the possibility to study this using crash tests.Methods: Simulations of single-bicycle crashes were performed in the VTI crash safety laboratory. Two bicycle crash scenarios were simulated: "a sudden stop" and "sideways dislocation of the front wheel"; using four different bicycle types: a "lady's bicycle", a commuter bicycle, a recumbent bicycle and a pedelec; at two speeds: 15 and 25 km/h. In addition, sideway falls were performed with the bicycles standing still. All tests were done with a Hybrid II 50th percentile crash test dummy placed in the saddle of the bicycles, with acceleration measurements in the head.Results: The crash tests showed that a sudden stop, e.g. a stick or bag in the front wheel, will result in a falling motion over the handle bars causing a forceful head impact while a sideways dislocation of the front wheel will result in a falling motion to the side causing a more moderate head impact. The falling motion varies between the different bicycle types depending on crash test scenario and speed. The pedelec had a clearly different falling motion from the other bicycle types, especially at a sudden stop.Conclusions: The study implies that it is possible to examine single-bicycle crashes using crash tests, even though the setup is sensitive to minor input differences and the random variation in the resulting head impact values can be large. Sideway falls with the bicycles standing still were easier to perform with a good repeatability and indicated an influence of seating height on the head impact.

译文

目的: 本研究的目的是检查自行车设计和速度对遭受单自行车碰撞时头部碰撞的影响,以及使用碰撞测试研究这一点的可能性。方法: 单自行车碰撞的模拟在VTI碰撞安全实验室进行。模拟了两种自行车碰撞场景: “突然停止” 和 “前轮侧向错位”; 使用四种不同的自行车类型: “女士自行车”,通勤自行车,卧式自行车和pedelec; 两种速度: 15和25 km/h。此外,在自行车静止不动的情况下进行了侧向坠落。所有的测试都是用放在自行车鞍座上的混合动力II第50百分位碰撞测试假人完成的,并在头部进行加速度测量。结果: 碰撞测试显示突然停止,例如前轮的棍子或袋子,将导致在手柄杆上的下落运动引起有力的头部撞击,而前轮的侧向错位将导致侧向的下落运动引起更温和的头部撞击。根据碰撞测试场景和速度,不同类型的自行车的下落运动会有所不同。pedelec的下落运动与其他类型的自行车明显不同,尤其是在突然停止时。结论: 该研究表明,可以使用碰撞测试来检查单自行车碰撞,即使设置对较小的输入差异敏感,并且所产生的头部冲击值的随机变化也可能很大。自行车静止不动时的侧边摔倒更容易执行,并且具有良好的可重复性,并表明座位高度对头部撞击的影响。

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