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Effect of Electrical Current on the Tribological Behavior of the Cu-WS_2-G Composites in Air and Vacuum 被引量:9
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作者 QIAN Gang FENG Yi +3 位作者 LI Bin HUANG Shiyin LIU Hongjuan DING Kewang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第2期384-392,共9页
As the traditional graphite-based composites cannot meet the requirement of rapid developing modern industry, novel sliding electrical contact materials with high self-lubricating performance in multiple environments ... As the traditional graphite-based composites cannot meet the requirement of rapid developing modern industry, novel sliding electrical contact materials with high self-lubricating performance in multiple environments are eagerly required. Herein a copper-based composite with WS2 and graphite as solid lubricant are fabricated by powder metallurgy hot-pressed method. The friction and wear behaviors of the composites with and without current are investigated under the condition with sliding velocity of 10 m/s and normal load of 2.5N/cm 2 in both air and vacuum. Morphologies of the worn surfaces are observed by optical microscope and compositions of the lubricating films are analyzed by XPS. Surface profile curves and roughness of the worn surfaces are obtained by 2205 surface profiler. The results of wear tests show that the friction coefficient and wear volume loss of the composites with current are greater than that without current in both air and vacuum due to the adverse effects of electrical current which damaged the lubricating film partially and roughed the worn surfaces. XPS results demonstrate that the lubricating film formed in air is composed of oxides of Cu, WS2 , elemental S and graphite, while the lubricating film formed in vacuum is composed of Cu, WS2 and graphite. Because of the synergetic lubricating action of oxides of Cu, WS2 and graphite, the composites show low friction coefficient and wear volume loss in air condition. Owing to the fact that graphite loses its lubricity which makes WS2 become the only lubricant, severe adhesive and abrasive wear occur and result in a high value of wear rate in vacuum condition. The formation of the lubricating film on the contact interface between the brush and ring is one of the factors which can greatly affect the wear performance of the brushes. The low contact voltage drop of the composites in vacuum condition is attributed to the high content of Cu in the surface film. This study fabricated a kind of new sliding electrical contact self-lubricating composite with dual-lubricant which can work well in both air and vacuum environments and provides a comprehensive analysis on the lubrication mechanisms of the composite. 展开更多
关键词 cu-ws2-G composites electrical current air and vacuum environments friction and wear contact voltage drop
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Effect of WS_2 particle size on mechanical properties and tribological behaviors of Cu-WS_2 composites sintered by SPS 被引量:4
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作者 Jin ZHOU Chao MA +2 位作者 Xiao KANG Lei ZHANG Xin-li LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第6期1176-1185,共10页
The mechanical properties and tribological behaviors of Cu-WS2 composites fabricated by spark plasma sintering(SPS) using two different WS2 particle sizes of 0.6 and 5.0 μm and Cu powders as raw materials were inve... The mechanical properties and tribological behaviors of Cu-WS2 composites fabricated by spark plasma sintering(SPS) using two different WS2 particle sizes of 0.6 and 5.0 μm and Cu powders as raw materials were investigated. The results indicate that the bending strength and tribological behavior of Cu-WS2 composites are greatly affected by the size of WS2 particles. The bending strength of Cu-WS2 composites with the WS2 particle size of 5.0 μm is 292.2 MPa. As the size of WS2 particle decreases to 0.6 μm, the bending strength also decreases to 181.5 MPa. Moreover, as the WS2 particle size decreases from 5.0 to 0.6 μm, the wear rate of Cu-WS2 composite sharply increases from 2.99×10^-14 to 6.13×10^-14 m^3/(N·m) and its friction coefficient increases from 0.158 to 0.172. The size of WS2 particle(5.0 μm) plays an important role in forming transfer film formed on the counter-face. The sample with 5.0 μm WS2 particle forms smoother and more continuous transfer film, which results in a low wear rate and friction coefficient of the Cu-WS2 composites. 展开更多
关键词 cu-ws2 composites mechanical properties wear rate friction coefficient continuous transfer film spark plasma sintering
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铜基固体无铅自润滑材料中WS_2的烧结行为 被引量:6
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作者 赵林 姚萍屏 +4 位作者 肖叶龙 谭慧强 贡太敏 周海滨 左晓婷 《粉末冶金材料科学与工程》 EI 北大核心 2013年第4期477-482,共6页
以CuSn8Ni3雾化合金粉和WS2为原料,采用粉末冶金松装烧结技术制备铜基固体无铅自润滑材料,利用X射线衍射、能谱微区成分定量分析以及热力学自由能计算等研究该材料中WS2的烧结行为,并研究WS2含量(质量分数)对其显微组织、孔隙度及硬度... 以CuSn8Ni3雾化合金粉和WS2为原料,采用粉末冶金松装烧结技术制备铜基固体无铅自润滑材料,利用X射线衍射、能谱微区成分定量分析以及热力学自由能计算等研究该材料中WS2的烧结行为,并研究WS2含量(质量分数)对其显微组织、孔隙度及硬度等的影响。结果表明,在高温烧结条件下,WS2不与保护气氛H2发生反应,但在化学驱动力作用下WS2与金属基体原位形成金属硫化物和W等新相;随WS2含量增加,烧结后材料的孔隙度逐步增大,硬度显著降低,但通过轧制和复烧,孔隙度明显下降,并且由于硬质相W的颗粒强化作用,硬度显著提高。 展开更多
关键词 WS2 松装烧结 固体自润滑 铜基 烧结行为
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铜-石墨-WS2-碳纳米管复合材料的滑动电磨损机制 被引量:3
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作者 钱刚 陆大伟 +3 位作者 蔡承宇 赵浩 周子珏 凤仪 《合肥工业大学学报(自然科学版)》 CAS 北大核心 2020年第4期457-462,共6页
滑动电接触材料的功能是在设备的固定部件和运动部件之间传递电流,其在运行过程中受到机械载荷和电载荷的共同作用。铜-石墨复合材料因其优异的机械强度、良好的导电导热性能以及自润滑特性,常被用来制备电刷、受电弓滑板等滑动电接触... 滑动电接触材料的功能是在设备的固定部件和运动部件之间传递电流,其在运行过程中受到机械载荷和电载荷的共同作用。铜-石墨复合材料因其优异的机械强度、良好的导电导热性能以及自润滑特性,常被用来制备电刷、受电弓滑板等滑动电接触元件。然而随着各类电机的高速高载化,传统铜-石墨复合材料已越来越无法满足需求。文章通过粉末冶金热压法在铜-石墨复合材料中掺杂WS2及碳纳米管制备铜-石墨-WS2-碳纳米管(Cu-G-WS2-CNTs)复合材料,在通电条件下对其滑动摩擦磨损性能进行研究并分析其滑动电磨损机制。结果表明:滑动电磨损过程中Cu-G-WS2-CNTs复合材料的摩擦系数和磨损率均低于铜-石墨复合材料,是由于石墨、WS2及碳纳米管三者间的协同润滑作用所致;电磨损表面形貌显示Cu-G-WS2-CNTs复合材料的滑动电磨损机制主要有磨粒磨损、粘着磨损、表面疲劳磨损以及氧化磨损。 展开更多
关键词 铜-石墨复合材料 WS2 碳纳米管 电磨损机制 协同润滑
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Effect of current polarity on electrical sliding wear behavior of Cu-WS_2-graphite-WS_2 nanotube composites in air and vacuum conditions 被引量:5
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作者 QIAN Gang FENG Yi +3 位作者 CHEN FanYan LIU WenHong ZHANG XueBin LIU YanFang 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第11期2839-2846,共8页
In this paper Cu-WS2-graphite-WS2nanotube composites were fabricated by powder metallurgy hot pressing method.The effect of current polarity on the wear rates and contact voltage drops of the composites were investiga... In this paper Cu-WS2-graphite-WS2nanotube composites were fabricated by powder metallurgy hot pressing method.The effect of current polarity on the wear rates and contact voltage drops of the composites were investigated using a brush-on-slip ring tribometer rubbing against Cu-5 wt.%Ag alloy ring in air and vacuum,respectively.The worn surfaces of the composites were analyzed by scanning electron microscopy(SEM)and X-ray photoelectron spectroscopy(XPS).Surface profile curves of the worn tracks were measured using the surface profiler.The results demonstrated that the current polarity has a significant effect on the wear rates and contact voltage drops of the composites in both air and vacuum conditions.Positive brush possesses a higher wear rate compared with the negative brush in the air atmosphere since the electrical field direction activates oxidation at the positive brush surface while inhibits oxidation at the negative brush surface.Except for the regular wear losses,the combined effect of molten metal bridge erosion and arc erosion cause the positive brush to lose extra material and the negative brush to gain extra material,so the positive brush shows a higher wear rate in the vacuum condition.The contact voltage drop of the positive brush is lower than that of the negative brush in the air atmosphere,but contrarily,the positive brush shows a higher contact voltage drop in the vacuum condition. 展开更多
关键词 cu-ws2-graphite-WS2 nanotube composites current polarity air and vacuum conditions wear rate contact voltage drop
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铜基自润滑复合材料的电弧烧蚀性能 被引量:7
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作者 钱刚 凤仪 +4 位作者 黄晓晨 张竞成 刘文宏 张学斌 蔡承宇 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2018年第6期1818-1823,共6页
研究了铜-30%(体积分数,下同)石墨、铜-30%二硫化钨和铜-30%二硫化钼3种铜基自润滑复合材料的抗电弧烧蚀性能。结果表明:石墨熔点较高,在电弧放电瞬间主要以氧化的形式损耗,而二硫化钨和二硫化钼则会在电弧放电造成的高温下发生熔化甚... 研究了铜-30%(体积分数,下同)石墨、铜-30%二硫化钨和铜-30%二硫化钼3种铜基自润滑复合材料的抗电弧烧蚀性能。结果表明:石墨熔点较高,在电弧放电瞬间主要以氧化的形式损耗,而二硫化钨和二硫化钼则会在电弧放电造成的高温下发生熔化甚至与铜基体发生化学反应,所以铜-30%石墨复合材料的抗电弧烧蚀性能要优于铜-30%二硫化钨和铜-30%二硫化钼复合材料。铜基自润滑复合材料的电弧烧损机制主要有材料的氧化、熔化飞溅、内部化学反应以及疲劳脱落。 展开更多
关键词 铜基自润滑复合材料 石墨 二硫化钨 二硫化钼 电弧烧蚀
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