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Effects of Mixing the Steel and Carbon Fibers on the Friction and Wear Properties of a PMC Friction Material

机译:钢和碳纤维混合对PMC摩擦材料摩擦磨损性能的影响。

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摘要

Friction, fade and wear characteristics of a PMC friction material containing phenolic resin, short carbon fiber, graphite, quartz, barite and steel fiber were investigated through using a small-scale friction testing machine. Four different friction materials with different relative amounts of the carbon fiber and steel fiber were manufactured and tested. Comparing with our previous work which contained only steel fiber as reinforcement, friction characteristics such as fade and recovery and wear resistance were improved significantly by adding a small amount of carbon fiber. For the mixing of carbon and steel fiber, the best frictional and wear behavior was observed with sample containing 4 weight percentage carbon fiber. Worn surface of this specimen was observed by optical microscopy. Results showed that carbon fibers played a significant role in the formation of friction film, which was closely related to the friction performance. The brake pad with Steel fibers in our previous work, showed low friction coefficient and high wear rate. In addition, a friction film was formed on the surface with a relatively poor quality. In contrast, the samples with mixing the steel and carbon fiber generated a stable friction film on the pad surface, which provided excellent friction stability with less wear.
机译:通过使用小型摩擦试验机研究了含酚醛树脂,短碳纤维,石墨,石英,重晶石和钢纤维的PMC摩擦材料的摩擦,褪色和磨损特性。制造并测试了具有相对含量的碳纤维和钢纤维的四种不同的摩擦材料。与我们以前仅包含钢纤维作为增强材料的工作相比,通过添加少量碳纤维可以显着改善褪色和恢复性以及耐磨性等摩擦特性。对于碳纤维和钢纤维的混合,含有4%(重量)碳纤维的样品观察到最佳的摩擦和磨损性能。通过光学显微镜观察该样品的磨损表面。结果表明,碳纤维在摩擦膜的形成中起着重要的作用,这与摩擦性能密切相关。在我们先前的工作中,采用钢纤维制成的刹车片显示出低摩擦系数和高磨损率。另外,在表面上形成了质量相对较差的摩擦膜。相反,混合了钢和碳纤维的样品在衬套表面上产生了稳定的摩擦膜,从而提供了优异的摩擦稳定性,且磨损较少。

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