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Advanced Friction-Wear Behavior of Organic Brake Pads Using a Newly Developed System

机译:使用新开发系统的有机制动垫的高级摩擦磨损行为

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摘要

The objective of this study was to investigate the influence of an advanced performance system on the tribological behavior of brake pad material using a specially designed brake pad tester system following standard SAE J-661. The tribological behavior and friction and wear characteristics of the organic brake pad samples were evaluated. During braking tests, the samples, in contact with a cast iron disk, were studied at different disc speeds, temperatures, and braking cycles under a constant pressure. In order to understand the friction and wear behavior, the unworn surfaces, worn surfaces, and wear debris were characterized by means of scanning electron microscopy (SEM) and energy-dispersive X-ray (EDX). Furthermore, the surface characteristics and differences in the wear modes of the brake pad samples were examined. Wear debris was permitted to deform the brake pad surfaces, leading to friction layers and enabling the estimation of the friction behavior of the brake pads. The results showed that the best friction-wear behavior was obtained with lower braking cycles at low speeds and temperature. Thus, the newly developed brake pad tester system proved very effective in evaluating the performance of the brake pad samples.
机译:本研究的目的是研究先进的性能系统对制动垫​​材料的摩擦学行为的影响,使用标准SAE J-661之后的专门设计的制动垫测试仪系统。评价有机制动垫样品的摩擦学行为和摩擦和磨损特性。在制动测试期间,在恒定压力下在不同的盘速度,温度和制动循环中研究与铸铁盘接触的样品。为了了解摩擦和磨损行为,通过扫描电子显微镜(SEM)和能量分散X射线(EDX)表征了不磨损的表面,磨损的表面和磨损碎片。此外,检查了制动垫样品的磨损模式的表面特性和差异。允许磨损碎片变形制动垫表面,导致摩擦层并能够估计制动衬块的摩擦行为。结果表明,在低速和温度下以较低的制动循环获得最佳摩擦磨损行为。因此,新开发的制动垫测试仪系统证明非常有效地评估制动垫样品的性能。

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