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Contact Voltage Drop and Brush Wear Characteristics for Various Silver Content of the Silver Graphite Brush in Slip Ring System

机译:滑环系统中不同含量银石墨刷的接触电压降和电刷磨损特性

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Sliding contact enables the transfer of electrical current between stationary and moving conductors. Typical contacting components are a brush and commutator in direct current machines and a brush and slip ring in alternating-current machines [1]. In recent years, brushes have been installed increasingly severe environments, such as in wind turbine generators and automotive alternators. Furthermore, the brush/slip-ring system for an electrical signal, such as that of radar and computed tomography systems, must have stable conductivity and therefore be reliable and easily maintained. Thus, graphite brushes coated with silver, which has excellent conductive performance, and noble-metal slip rings are widely used. However, the effects of the materials on sliding characteristics have not yet been determined [2]. In this study, we conducted sliding tests for 20 h, using silver graphite brushes (coated with silver contents of 50, 60, 70, 80, and 90 wt%) and a gold-coated slip ring, under a temperature of 20°C and brush current of 9.6 A. Results showed that the contact voltage drop and amount of wear were optimal when using a 60-80% silver brush. In addition, the lubrication effect of carbon is reduced and the amount of brush wear rapidly increased with a carbon occupancy of 40% or less in the contact area of the brush. Then, in the case of the brush current of 9.6A, the 80% silver brush had a ratio of mechanical to electrical wear of about 1:2 while the 90% silver brush had a ratio of about3:1.
机译:滑动接触使电流能够在固定导体和移动导体之间传递。典型的接触组件是直流电机中的电刷和换向器以及交流电机中的电刷和滑环[1]。近年来,电刷已经安装在越来越严酷的环境中,例如在风力涡轮发电机和汽车交流发电机中。此外,用于电信号的电刷/滑环系统,例如雷达和计算机断层摄影系统,必须具有稳定的导电性,因此必须可靠且易于维护。因此,具有优良的导电性能的涂有银的石墨电刷和贵金属滑环被广泛使用。但是,尚未确定材料对滑动特性的影响[2]。在这项研究中,我们在20°C的温度下使用银石墨刷(涂银含量分别为50、60、70、80和90 wt%)和涂金滑环进行了20小时的滑动测试。电刷电流为9.6A。结果表明,当使用60-80%的银电刷时,接触电压降和磨损量最佳。另外,碳的润滑作用降低并且电刷的磨损量随着碳在电刷的接触区域中的占有率为40%以下而迅速增加。然后,在电刷电流为9.6A的情况下,80%的银刷的机械磨损和电气磨损比约为1:2,而90%的银刷的机械磨损比约为3:1。

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