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温度对电沉积纯银镀层和纯银/银石墨复合镀层磨损性能和行为的影响 被引量:5

The Effect of Temperature on Wear Resistance and Behavior of Pure Silver and Silver/Silver-Graphite Composite Coatings Prepared by Electro-Deposition
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摘要 本文中使用电沉积方法在铜基表面分别制备了纯银镀层和纯银/银石墨复合镀层,研究了不同温度下两种镀层的磨损性能和行为.研究表明:室温至120℃,纯银镀层磨损机理为轻微的黏着磨损,摩擦系数稳定在0.35~0.45左右,磨损率为3×10^(-14) m^3/(N·m)左右;240~480℃,镀层磨损机理为明显的黏着磨损,磨损率急剧增加,摩擦系数不稳定.纯银/银石墨复合镀层在室温至240℃的磨损机理为轻微的黏着磨损,平均摩擦系数在0.1左右,磨损率增加缓慢;当温度超过240℃时,由于抗高温石墨膜的破裂,出现了严重的塑性变形;480℃时,复合镀层磨损机理主要表现为明显的磨粒磨损,摩擦系数不稳定,磨损率达到46×10^(-14) m^3/(N·m),耐磨性优于纯银镀层. The pure silver and silver/silver-graphite composite coatings on the sulgstrate ot copper were prep^u~u uy electro-deposition. The wear resistance and behavior of the pure silver and silver/silver-graphite composite coatings at different processing temperature were investigated. The wear mechanism of pure silver coating at room temperature to 120 ℃ was the mild adhesive wear, the friction coefficient and wear rate was about 0.35-0.45 and 3×1014 m3/(N'm), respectively. At 240-480 ℃, the wear mechanism of pure silver coating was adhesive wear and its wear rate increased rapidly and friction coefficient was instable. The wear mechanism of pure silver/silver-graphite composite coating at room temperature to 240 ℃ was the mild adhesive wear, its friction coefficient was about 0.1 and wear rate increased slowly with temperature. At temperature between 240 ℃ and 480 ℃, the severe plastic deformation appeared on the composite coating due to the fracture of the graphite film at high temperature. At 480 ℃, the wear mechanism of composite coating was mainly abrasive wear, its friction coefficient was instable and the wear rate of the composite coating was 46 × 10-14 m3/(N.m), indicating the wear resistance of high temperature was better than that of the pure silver coating.
出处 《摩擦学学报》 EI CAS CSCD 北大核心 2017年第2期257-262,共6页 Tribology
基金 国网浙江省电力公司科技/信息化项目(B355DW140005) 江西省自然科学基金(20151BAB206017) 江西省科技成果重点转移转化计划项目(20151BBI90006) 江西省教育厅科学技术研究项目(GJJ150723) 江西省金属材料微结构调控重点实验室基金(JW201523004)资助~~
关键词 电沉积 银石墨复合镀层 耐磨性 磨损 electro-deposition silver-graphite composite coating wear resistance wear
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