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首页> 外文期刊>Transactions of Tianjin University >Transitions in Wear and Friction of Carbon Fiber Reinforced Copper Matrix Composite Sliding Against AISI-1045 Steel
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Transitions in Wear and Friction of Carbon Fiber Reinforced Copper Matrix Composite Sliding Against AISI-1045 Steel

机译:碳纤维增强铜基复合材料对AISI-1045钢的滑动摩擦磨损

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摘要

The friction and wear properties of carbon fiber reinforced copper matrix composite in dry sliding against AISI-1045 steel was evaluated by a block-on-ring test machine. It was shown that the low frictional factor and wear rate of the composite block could be maintained when pressure or velocity was below a certain value. But when the pressure or velocity exceeded the critical value, the friction factor and wear rate tended to increase rapidly with pressure and sliding velocity. The morphologies, elemental compositions, and surface profile of worn composite surfaces at different wear stages were analyzed by means of scanning electron microscopy, energy dispersive spectrometry, and profile-meter. It was found that low values of friction and wear were due to a thin solid film forming on the surface of the composite block which includes carbon and copper at a mild wear stage. The film could impede adhesion and provide some degree of self-lubrication. When the film included more metal elements and were damaged, severe wear happened, and the wear rate increased sharply. As a result, a transition diagram in friction and wear was constructed, which provided pressure and velocity conditions of change from mild wear and low friction to severe wear and high friction for the wear-resisting design.
机译:通过环上试块机评估了碳纤维增强铜基复合材料在干滑动中与AISI-1045钢的摩擦磨损性能。结果表明,当压力或速度低于一定值时,可以保持低摩擦系数和低磨损率。但是,当压力或速度超过临界值时,摩擦因数和磨损率会随着压力和滑动速度而迅速增加。通过扫描电子显微镜,能量色散谱和轮廓仪分析了在不同磨损阶段磨损复合材料表面的形貌,元素组成和表面轮廓。已经发现,较低的摩擦和磨损值是由于在轻度磨损阶段在复合块的表面上形成了一层薄的固体膜而形成的,该固体膜包括碳和铜。薄膜可能会阻碍粘附并提供一定程度的自润滑。当薄膜中​​包含更多的金属元素并被损坏时,会发生严重磨损,磨损率急剧增加。结果,建立了摩擦磨损的过渡图,为耐磨设计提供了从轻度磨损和低摩擦到重度磨损和高摩擦的压力和速度条件变化。

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