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    李克敏, 上官宝, 杜三明, 张永振. 摩擦速度和电流密度对铜基复合材料载流摩擦磨损性能的影响[J]. 机械工程材料, 2015, 39(3): 22-27.
    引用本文: 李克敏, 上官宝, 杜三明, 张永振. 摩擦速度和电流密度对铜基复合材料载流摩擦磨损性能的影响[J]. 机械工程材料, 2015, 39(3): 22-27.
    LI Ke-min, SHANGGUAN Bao, DU San-ming, ZHANG Yong-zhen. Effects of Friction Velocity and Current Density on Current-Carrying Friction and Wear Properties of Copper Matrix Composites[J]. Materials and Mechanical Engineering, 2015, 39(3): 22-27.
    Citation: LI Ke-min, SHANGGUAN Bao, DU San-ming, ZHANG Yong-zhen. Effects of Friction Velocity and Current Density on Current-Carrying Friction and Wear Properties of Copper Matrix Composites[J]. Materials and Mechanical Engineering, 2015, 39(3): 22-27.

    摩擦速度和电流密度对铜基复合材料载流摩擦磨损性能的影响

    Effects of Friction Velocity and Current Density on Current-Carrying Friction and Wear Properties of Copper Matrix Composites

    • 摘要: 采用粉末冶金法制备了3%SiC-10%C-87%Cu和10%C-90%Cu两种铜基复合材料,并在销盘式载流摩擦磨损试验机上进行试验,研究了摩擦速度和电流密度对这两种复合材料燃弧率、载流效率以及摩擦因数和磨损率的影响.结果表明:在相同的试验条件下,与C/Cu复合材料相比,SiC/C/Cu复合材料的摩擦因数较大,磨损率较小;燃弧率主要由摩擦材料表面的接触状态及电流密度决定,载流效率受燃弧率的影响较大;当摩擦速度为10~25 m·s-1时,两种复合材料的燃弧率均低于10%,载流效率均维持在85%以上,随着摩擦速度增大至30 m·s-1,它们的燃弧率均急剧增大,载流效率均急剧降低;随着电流密度增大,两种复合材料的燃弧率均逐渐增大,载流效率均逐渐减小.

       

      Abstract: Two kinds of copper matrix composites of 3%SiC-10%C-87%Cu and 10%C-90%Cu were fabricated by powder metallurgic method,and then current-carrying friction and wear testing was carried on.The effects of friction velocity and current density on arcing rate and current-carrying efficient,friction coefficient and wear rate of the two kinds of composites were studied.The results indicate that the friction coefficient of SiC/C/Cu composite was higher than that of the C/Cu composite,but the wear rate of the former was lower under the same conditions.The arcing rate was determined by the conditions of material surface and current density,but the current-carrying efficient was mainly influenced by the arcing rate.For the two kinds of composite,the arcing rate was less than 10% and the current-carrying efficient was higher than 85% at the fricion velocity of 10-25 m·s-1,their arcing rate exhibited a sharp increase and the current-carrying efficient exhibited a sharp decrease when the friction rate increased to 30 m·s-1.With the increase of current density,the arcing rate of the two kinds of composites increased gradually and the current-carrying efficient reduced gradually.

       

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