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Friction and wear behavior of Cu–4 wt.%Ni–TiC composites under dry sliding conditions

机译:Cu–4 wt。%Ni–TiC复合材料在干滑条件下的摩擦磨损性能

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Abstract The present study synthesized Cu–4 wt% Ni matrix composites reinforced with different percentages of TiC (0, 2, 4, 6, and 8 wt%) through high-energy ball milling, followed by compaction and sintering. The friction and wear behavior was examined at four different normal loads of 5, 10, 15, and 20 N. A constant sliding speed of 1.25 m/s was maintained while sliding against a hardened counterface made of EN31 steel (HRC 60) under ambient conditions using a pin-on-disk test rig. The composite hardness increased until the addition of 4 wt% of TiC, beyond which it was observed to decrease. Such a trend may be attributed to the TiC agglomeration in the composites containing relatively larger amounts of TiC (i.e., 6 and 8 wt%). The wear rate linearly increased with the load. However, the composites exhibited a lower rate of wear than the matrix alloy, which may have resulted from the relatively higher hardness of composites. The observed friction and wear behavior has been explained on the basis of hardness and presence of the transfer layer on the worn surface and its nature, i.e., loose or well compacted. Addition of 4 wt% TiC showed the optimum performance in terms of friction and wear caused by its higher hardness and ability to hold a transfer layer of a relatively larger thickness compared to the other materials. The wear mechanism for the Cu4Ni matrix alloy was a mix of adhesive and oxidative wear and primarily abrasive for the composites containing hard TiC particles.
机译:摘要本研究通过高能球磨,紧实和烧结,合成了以不同百分比的TiC(0、2、4、6和8 wt%)增强的Cu–4 wt%Ni基复合材料。在5、10、15和20 N的四个不同法向载荷下检查了摩擦和磨损行为。在环境温度下,它在由EN31钢(HRC 60)制成的硬化对接面上滑动时,保持了1.25 m / s的恒定滑动速度。使用针式磁盘测试台的条件。复合材料硬度增加,直到添加4 wt%的TiC,然后观察到它降低了。这种趋势可归因于含有相对大量的TiC(即6和8wt%)的复合材料中的TiC附聚。磨损率随负载线性增加。但是,复合材料的磨损率比基体合金低,这可能是由于复合材料的相对较高的硬度导致的。观察到的摩擦和磨损行为已经根据磨损表面的硬度和转移层的存在及其性质(即疏松或压实度)进行了解释。与其他材料相比,添加4 wt%的TiC在摩擦和磨损方面表现出最佳性能,这是由于其较高的硬度和保持相对较大厚度的转印层的能力所致。 Cu4Ni基合金的磨损机理是粘合剂和氧化磨损的混合物,主要是含有硬TiC颗粒的复合材料的磨料。

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