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Measuring bicycle braking friction in winter conditions

机译:在冬季条件下测量自行车制动摩擦

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Bicycling is considered an attractive way of traveling and is becoming a more and more common mode of transportation in Scandinavia. However, winter conditions create a challenge for providing a high quality, functional bicycle road network. Winter maintenance actions, such as snow removal, gritting and salting, are needed. The Norwegian Public Road Administration (NPRA) sets standards for winter maintenance of cycleways, which includes a friction criterion. Friction measurement devices (FMDs) are used to test whether the conditions are within the specified standard. However, it is not known how well these values describe the friction experienced by bicycles. The two objectives of this study are: 1) to measure actual braking friction of bicycles in winter conditions and 2) to compare the results to friction measurement devices (FMDs). Two methods were used to measure bicycle friction in this study: deceleration and braking distance. Two instrumented bicycles with studded winter tires were tested by all-out braking tests on winter road surfaces. As a comparison, friction of the test stretch was measured by three FMDs. The results showed that both methods are suitable for defining bicycle friction; however, the deceleration was found to be a more accurate method in the given field conditions. The bicycles experienced the same or higher friction than the FMDs. The variability of bicycle friction was also greater than the variability of each individual FMD. This is probably due to lack of slip control of the bicycles and therefore it is uncertain whether maximum friction was in fact attained during the braking tests. (c) 2016 Elsevier B.V. All rights reserved.
机译:骑自行车被认为是一种有吸引力的旅行方式,并且正在成为斯堪的纳维亚越来越普遍的交通方式。然而,冬季条件对于提供高质量,功能性的自行车道路网提出了挑战。需要进行冬季维护操作,例如除雪,灌沙和撒盐。挪威公共道路管理局(NPRA)为自行车道的冬季维护设定了标准,其中包括摩擦标准。摩擦测量设备(FMD)用于测试条件是否在指定标准内。但是,尚不清楚这些值如何很好地描述了自行车所经历的摩擦。这项研究的两个目标是:1)在冬季条件下测量自行车的实际制动摩擦力,以及2)将结果与摩擦测量设备(FMD)进行比较。在这项研究中,两种方法用于测量自行车的摩擦力:减速度和制动距离。在冬季路面上通过全面制动测试对两辆装有冬季轮胎的仪表自行车进行了测试。作为比较,通过三个FMD测量测试拉伸的摩擦。结果表明,两种方法均适用于定义自行车的摩擦力。但是,在给定的现场条件下,减速是一种更准确的方法。自行车的摩擦力与FMD相同或更高。自行车摩擦的可变性也大于每个单独的FMD的可变性。这可能是由于自行车缺乏滑动控制,因此不确定在制动测试过程中是否实际上达到最大摩擦。 (c)2016 Elsevier B.V.保留所有权利。

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