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Tribological behavior of Al-Si-SiC{sub}p composites/automobile brake pad system under dry sliding conditions

机译:Al-Si-SiC {sub} p复合材料/汽车刹车片系统在干滑条件下的摩擦学行为

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摘要

Tribological behavior of stir-cast Al-Si/SiC{sub}p composites against automobile brake pad material was studied using Pin-on-Disc tribo-tester. The Al-metal matrix composite (Al-MMC) material was used as disc, whereas the brake pad material forms the pin. It has been found that both wear rate and friction coefficient vary with both applied normal load and sliding speed. With increase in the applied normal load, the wear rate was observed to increase whereas the friction coefficient decreases. However, both the wear rate and friction coefficients were observed to vary proportionally with the sliding speed. During the wear tests, formation of a tribo-layer was observed, presence of which can affect the wear behavior, apart from acting as a source of wear debris. Tribo-layer formed over the worn disc surfaces was found to be heterogeneous in nature. Morphology and topography of worn surfaces and debris were studied using scanning electron microscope (SEM). Chemical composition of different wear products was obtained using electron probe micro analyzer (EPMA) and X-ray diffraction (XRD) techniques. Possible wear mechanisms operative in Al-MMC-brake pad tribo-couple have been discussed.
机译:利用Pin-on-Disc摩擦试验机研究了Al-Si / SiC {sub} p复合铸造铸件对汽车刹车片材料的摩擦学行为。铝金属基复合材料(Al-MMC)被用作制动盘,而制动衬块材料则形成销。已经发现,磨损率和摩擦系数都随所施加的正常载荷和滑动速度而变化。随着法向载荷的增加,观察到磨损率增加,而摩擦系数减小。但是,观察到磨损率和摩擦系数均与滑动速度成比例地变化。在磨损测试过程中,观察到形成了摩擦层,摩擦层的存在不仅会影响磨损碎片的产生,还会影响磨损行为。发现在磨损的椎间盘表面上形成的摩擦层本质上是异质的。使用扫描电子显微镜(SEM)研究了磨损表面和碎屑的形态和形貌。使用电子探针微分析仪(EPMA)和X射线衍射(XRD)技术获得了不同磨损产品的化学成分。已经讨论了在Al-MMC-刹车片摩擦耦合中可能起作用的磨损机理。

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