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A Comparative Study on the Friction and Wear Properties of Three Different Copper Alloys

机译:三种不同铜合金摩擦磨损性能的比较研究

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A comparative study on the friction and wear properties of three kinds of copper alloys, including Cu-Ni based, Cu-Al and Cu-Be alloys was carried out in this study. The friction pair was stainless steel, and both dry and MoS_2 lubrication friction experiments were investigated. During the experiments, different loads were chosen for different alloys. It was found that under dry friction condition, the friction coefficients of both Cu-Ni based and Cu-Al alloys did not change as the loads changes, whereas the friction coefficient of Cu-Be alloy increased as the loads increases. Under lubrication friction condition, the friction coefficients of all three alloys did not change as the load changes. The results show that the dry friction coefficient of Cu-Ni based alloy was the largest (0.74), the Cu-Al alloy next (0.60), and the Cu-Be alloy had the smallest dry friction coefficient (0.54). The lubrication friction coefficient of Cu-Ni based and Cu-Be was equal and relatively smaller (0.12), whereas the Cu-Al alloy had a relative larger lubrication friction coefficient (0.27). The microstructure observations were consistent with the friction and wear performance, and the SEM results show that different wear mechanisms were dominated for different alloys.
机译:本研究开展了三种铜合金摩擦和磨损性能的比较研究,包括Cu-Ni基,Cu-Al和Cu-Be合金。摩擦对是不锈钢,并研究了干燥和MOS_2润滑摩擦实验。在实验期间,选择不同的载荷用于不同的合金。发现在干摩擦条件下,随着负载变化,Cu-Ni基和Cu-Al合金的摩擦系数不会改变,而随着负载的增加,Cu-Pe的摩擦系数增加。在润滑摩擦条件下,所有三种合金的摩擦系数随着负荷变化而没有变化。结果表明,Cu-Ni基合金的干摩擦系数是最大的(0.74),Cu-Al合金的下一(0.60),Cu-in合金具有最小的干摩擦系数(0.54)。基于Cu-Ni的润滑摩擦系数和Cu-Be等于且相对较小(0.12),而Cu-Al合金具有相对较大的润滑摩擦系数(0.27)。微观结构观察与摩擦和磨损性能一致,SEM结果表明,不同的磨损机制为不同的合金占主导地位。

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