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The effect of brush spring pressure on the wear behaviour of copper-graphite brushes with electrical current

机译:电刷弹簧压力对带电流的铜石墨电刷磨损性能的影响

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Electrical brushes are used to conduct current between stationary part and moving part of a motor or a generator. To ensure proper current transfer and continuous contact, brushes must be loaded against the sliding contact surface with a sufficient force. High loads increase frictional losses and wear of the brushes and/or sliding surface. While relatively low contact pressure causes arcing and higher voltage drop. In this study, a novel pin-on-slip ring-type friction and wear test machine was designed and manufactured for the purpose of brush testing. Copper-graphite-based electrical brush containing 90wt% copper and 10wt% graphite was manufactured by powder metallurgy and the tribological behaviour and voltage drop were investigated at different brush spring pressures at 10-200 kPa with current. It was found that the specific wear curve showed three distinct wear rate regimes, such as low, mild, and severe. Severe wear was observed below 30 kPa and above 120 kPa brush spring pressures (BSP) (3 and 12 N loads, respectively). Arc erosion was the main wear mechanism below 30 kPa brush spring pressure while abrasion was dominant above 120 kPa BSP. Low and mild regimes were observed between 30-50 and 50-120 kPa BSP, respectively. SEM observations showed that a continuous surface layer was formed at the sliding surfaces of the wear samples in low and mild wear regimes. The wear debris was examined by SEM and X-ray diffractometer.
机译:电刷用于在电动机或发电机的固定部分和运动部分之间传导电流。为了确保正确的电流传输和连续接触,必须以足够的力将电刷加载到滑动接触表面上。高负载会增加摩擦损耗以及电刷和/或滑动表面的磨损。虽然相对较低的接触压力会导致电弧放电和较高的电压降。在这项研究中,设计并制造了一种新型的销轴滑环式摩擦磨损试验机,用于电刷测试。通过粉末冶金法制备了包含90wt%的铜和10wt%的石墨的铜石墨基电刷,并在电流为10-200 kPa的不同电刷弹簧压力下研究了摩擦学行为和电压降。结果发现,比磨损曲线显示出三种不同的磨损率状态,例如低,中,重。在低于30 kPa和高于120 kPa的刷子弹簧压力(BSP)时,观察到严重磨损(分别为3和12 N负载)。低于30 kPa的刷簧压力时,电弧腐蚀是主要的磨损机理,而高于120 kPa的BSP磨损则占主导地位。在30-50 kPa和50-120 kPa BSP之间分别观察到低和温和的模式。 SEM观察表明,在低磨损和中度磨损状态下,磨损样品的滑动表面形成了连续的表面层。用SEM和X射线衍射仪检查磨损碎片。

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