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Performance Gains of Load Sensing Brake Force Distribution in Motorcycles

机译:摩托车负荷传感制动力分布的性能收益

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Commercial motorcycles and scooters incorporate independent circuits for front and rear brake actuation, thus precluding load-dependent brake force distribution. In all cases of manual brake force modulation between the front and rear wheels, there is poor compensation for the changes in wheel loads on the account of longitudinal weight transfer, thus making it challenging to provide an adequate braking force to each wheel. The ratio in which the braking force should be distributed between the front and the rear wheels is dependent on the motorcycle’s geometry, weight distribution, mechanical sizing of braking system components, and is a variable based on the instantaneous deceleration. This connotes that a fixed bias of front and rear braking forces can be optimized only for a narrow range of motorcycle’s deceleration. Maximum braking performance occurs just prior to wheel lock-up, as a sliding tire provides less grip than a rolling tire. This is also the scenario when both the tires are doing the maximum work in decelerating the motorcycle. Therefore an optimal brake force distribution is one that locks both the wheels at the same instant. In practice, however, a rider would avoid a front wheel lock-up as it would make the motorcycle challenging to steer. In theory, an apt distribution of the braking forces between the front and rear wheels maximizes the overall braking efficiency of the motorcycle whilst reducing its stopping distance. This paper examines the plausible performance gains of load sensing brake force distribution in a motorcycle.
机译:商业摩托车和小型摩托车包括用于前部和后部制动操纵独立的电路,从而排除了依赖于负载的制动力分配。在前轮和后轮之间的手动制动力调制的所有情况下,存在用于在该帐户纵向重量转移的轮负荷的变化的补偿差,从而使其具有挑战性的提供足够的制动力施加到每个车轮。其中制动力应的前和后轮之间分布的比率依赖于摩托车的几何形状,重量分布,制动系统部件的机械尺寸,以及是基于瞬时减速的变量。这暗指该前部和后部制动力的固定偏置可以仅窄范围的摩托车的减速进行优化。最大制动性能发生之前,为了车轮刹住,作为滑动轮胎提供了比滚动轮胎的抓地力以下。这也是当两个轮胎都在做减速的摩托车最大的工作场景。因此最佳的制动力分配是一个锁都在同一时刻车轮。然而在实践中,骑乘者将避免前轮锁定,因为它将使摩托车挑战转向。从理论上讲,在前后轮之间的制动力的分配倾向于最大化的摩托车,同时降低其制动距离的整体制动效能。本文探讨在摩托车中的负载感测制动力分配的合理的性能增益。

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  • 来源
    《NuGen Summit》|2019年|1 Electronic text data|共18页
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    Apurva Chakraborty;

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  • 中图分类 U464-53;
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