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Effects of water films and sliding speed on the frictional behavior of truck disc brake materials

机译:水膜和滑动速度对卡车盘式制动器材料摩擦性能的影响

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摘要

Friction materials for car and truck disc brake pads are typically complex composites containing metals, ceramics, and polymers that are designed to provide stable frictional performance over a range of vehicle operating conditions, exhibit acceptable wear life, and produce minimal noise and vibration. Despite the fact that brakes must operate under a variety of environmental conditions, most standardized and developmental laboratory tests for brake materials are conducted under dry sliding conditions. Studies of wet braking behavior are rare in the tribology literature. The present work investigated the frictional behavior of commercial truck brake pad materials sliding on gray cast iron simulated brake discs in the presence of water films. An instrumented sub-scale testing machine equipped with a water spray was used. There was a significant effect of water films on reducing pad/disc friction compared with dry tests on the same materials and at the same sliding speeds. The friction coefficient under water spray conditions was inversely proportional to the square of the sliding speed. The reduction of friction with increasing speed was principally due to hydrodynamic effects, although the water spray also reduced frictional heating and changed the nature of the transfer film formation on the cast iron contact surface. Frictional recovery occurred within seconds after the water spray was removed.
机译:用于汽车和卡车盘式刹车片的摩擦材料通常是包含金属,陶瓷和聚合物的复杂复合材料,旨在在各种车辆操作条件下提供稳定的摩擦性能,表现出可接受的磨损寿命,并产生最小的噪音和振动。尽管制动器必须在各种环境条件下运行,但大多数针对制动材料的标准化和开发性实验室测试都是在干燥滑动条件下进行的。在摩擦学文献中很少研究湿制动行为。本工作研究了在存在水膜的情况下在灰口铸铁模拟制动盘上滑动的商用卡车制动衬块材料的摩擦性能。使用装有水喷雾的仪器化的小型试验机。在相同的材料和相同的滑动速度下,与干法测试相比,水膜在降低垫/盘摩擦方面具有显着效果。喷水条件下的摩擦系数与滑动速度的平方成反比。摩擦随着速度的增加而减小主要是由于流体动力学效应,尽管喷水也减少了摩擦加热并改变了铸铁接触面上形成的转移膜的性质。去除水喷雾后数秒内发生摩擦恢复。

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