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Brake performance testing and truck runaway analysis

机译:制动性能测试和卡车失控分析

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Commercial vehicle air brake systems are associated with more heat problems than hydraulic brake systems on passenger vehicles. A typical commercial vehicle runaway involves a driver who has lost the ability to control the speed of his vehicle and runs off the road because of too much speed in a curve or collides with slower moving vehicles. In some cases the driver has the ability to control speed to some extent and is unaware that he has overused the brakes until faced with a situation requiring a heavy brake application. The loss of braking capacity on long steep downgrades is due to the combined effects of heating, brake system design, friction material properties, maintenance, and brake adjustment. Brake drums expand as temperatures increase causing the strokes of the pushrods to increase. Brakes that are out of adjustment or at the limit of adjustment before heating can lose effectiveness with less heating than properly adjusted brakes. As trucks have been improved to reduce aerodynamic drag and parasitic horsepower losses, the burden to develop more retarding horsepower capability has increased. The rate of brake heating is a function of usage and is affected by truck speed and load, gear selection, use of engine retard and drive line retarders. A methodology is presented for on-road data acquisition of brake temperatures, chamber pressures and pushrod travel. Data can be acquired on a grade or on flat ground such as a test track. New brake performance test data applicable to the understanding of runaway events are provided. An analytical computer utility, Brake Designer,is used to demonstrate the effects of heating and adjustment on brake effectiveness.
机译:商用车空气制动系统与乘用车上的液压制动系统具有比乘用车上的液压制动系统更多。典型的商用车辆失控涉及失去控制车辆速度的驾驶员,并且由于曲线中的速度太大或与移动车辆较慢的速度碰撞而离开道路。在某些情况下,驾驶员能够在某种程度上控制速度,并且没有意识到他已经过度使用了刹车,直到面对需要较重制动应用的情况。长期降级的制动能力损失是由于加热,制动系统设计,摩擦材料特性,维护和制动调整的综合影响。制动鼓随着温度的增加而导致推杆的冲程增加。在加热前的调整或在调整范围内的制动器可以减少效果,而不是较少的加热比适当调整的制动器。随着卡车的改善以降低空气动力学阻力和寄生马力损失,造成更加延缓马力能力的负担增加。制动加热速率是用法的函数,受到卡车速度和负载,齿轮选择,发动机延迟和驱动线延迟器的影响。提出了一种用于在线数据采集制动温度,室压力和推杆行程的方法。可以在等级或平面上获取数据,例如测试轨道。提供了适用于理解失控事件的新制动性能测试数据。用于展示加热和调整对制动效果的影响。

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