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Tribological Behaviors of Polymer-Based Hybrid Nanocomposite Brake Pad

机译:聚合物基杂交纳米复合制动垫的摩擦学性能

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摘要

Although extensive improvement has been done on brake pad for vehicles, most recent materials used still encounter wear rate, friction, stopping distance, and time deficiencies. In this regards, this study developed a polymer-based nanocomposite brake pad. Here, a combination of carbon-based materials, including those at a nanoscale, was used to produce the brake pad. Tribological performance, such as friction coefficient, wear rate, and stopping distances of developed brake pad were investigated using an inertial dynamometer. The results revealed that the stopping distances, the coefficient of friction (CoF), and wear rate vary with the brake pad formation and velocity. The micrographs show changes in the structural formation after the incorporation of carbon-based fillers. It also shows smooth surface structure and uniform dispersion of the carbon fiber. The smooth surface of the worn brake pad is an indicative of a tougher structure. Hence, it was deduced that the fabricated polymer-based hybrid composite had good tribological property. This improved property is suggestive of materials that may be successfully used for brake pad application.
机译:虽然车辆的刹车片已经进行了广泛的改进,但最近的材料仍然遇到磨损率,摩擦,停止距离和时间缺陷。在这方面,该研究开发了一种基于聚合物的纳米复合材料制动垫。这里,使用包括在纳米级的碳基材料的组合来制造制动垫。使用惯性测功机研究了摩擦系数,磨损率,磨损率和停止距离的摩擦系数,磨损率和停止距离。结果表明,停止距离,摩擦系数(COF)和磨损率随刹车片形成和速度而变化。显微照片显示在碳基填料掺入后的结构形成变化。它还显示出光滑的表面结构和碳纤维的均匀分散。磨损制动衬块的光滑表面是表示难看的结构的指示。因此,推导出制造的聚合物基杂化复合物具有良好的摩擦学性质。这种改进的性质是可以成功用于制动垫应用的材料的暗示。

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