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首页> 外文期刊>Tribology in Industry >A Friction, Wear and Emission Tribometer Study of Non-Asbestos Organic Pins Sliding Against AlSiC MMC Discs
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A Friction, Wear and Emission Tribometer Study of Non-Asbestos Organic Pins Sliding Against AlSiC MMC Discs

机译:非石棉有机销钉在AlSiC MMC盘上滑动的摩擦,磨损和排放摩擦学研究

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摘要

The friction, wear and particle emission from an AlSiC MMC brake discon-asbestos organic brake pad system is studied using a pin-on-disc tribometer. The results show that this unconventional AlSiC MMC brake disc system presents friction performance as good as a conventional cast iron brake disc system. During braking, brake pad materials are transferred to the brake disc surface to form a protective third body tribo-layer, resulting in a negative specific wear rate of the brake disc. A higher contact load is likely to make it easier to generate the tribo-layer. The tribo-layer also seems to depend on the disc surface grinding features and the contact temperature during braking. By reusing an AlSiC MMC disc where the tribo-layer is already formed, the airborne emission in terms of mass is about 50% lower and in terms of number about the same as the conventional brake contact pair under a similar braking condition. Further full-scale studies are suggested to determine the validity of the findings.
机译:使用销盘式摩擦计研究了AlSiC MMC制动盘/非石棉有机制动片系统的摩擦,磨损和颗粒物排放。结果表明,这种非常规的AlSiC MMC制动盘系统具有与常规铸铁制动盘系统相同的摩擦性能。在制动过程中,制动衬块材料会转移到制动盘表面上,形成保护性的第三车身摩擦层,从而导致制动盘的负比磨损率降低。较高的接触负载可能会使摩擦层的产生更容易。摩擦层似乎还取决于制动盘的表面磨削特性和制动过程中的接触温度。通过重新使用已经形成摩擦层的AlSiC MMC盘,在相似的制动条件下,空气排放的质量(质量)降低了约50%,数量减少了。建议进行进一步的全面研究以确定结果的有效性。

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