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The role of graphite particles in the high-temperature wear of copper hybrid composites against steel

机译:石墨颗粒在铜杂化复合材料对钢的高温磨损中的作用

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Copper matrix composite reinforced with SiC and graphite (Gr) particles was prepared by a powder metallurgy method. Dry sliding wear properties were tested in the temperature range 373-723 K, compared with the SiO/Cu composite. The addition of graphite particles simultaneously decreased the wear rates of the composite and the counterpart, and effectively avoided the occurrence of severe wear up to 723 K. The friction coefficient of copper hybrid composite was more stable and lower than that of SiO/Cu. Microstructural analysis showed that a uniform graphite microcrystals layer on the top of worn surface helped to decrease the plastic deformation in subsurface region and alleviate adhesion wear. It showed that graphite particle was an effective addition agent for copper matrix composite applied in high-temperature sliding wear condition.
机译:采用粉末冶金法制备了SiC和石墨(Gr)颗粒增强的铜基复合材料。与SiO / Cu复合材料相比,在373-723 K的温度范围内测试了干式滑动磨损性能。石墨颗粒的加入同时降低了复合材料和复合材料的磨损率,有效地避免了高达723 K的严重磨损的发生。铜杂化复合材料的摩擦系数比SiO / Cu稳定且低。显微组织分析表明,磨损表面顶部均匀的石墨微晶层有助于减少次表面区域的塑性变形并减轻粘附磨损。结果表明,石墨颗粒是用于高温滑动磨损条件下铜基复合材料的有效添加剂。

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