摩擦学
材料科学
润滑
碳纤维
电接点
复合材料
电流(流体)
含水量
受电弓
水分
冶金
润滑性
接触电阻
电弧
铜
使用寿命
图层(电子)
岩土工程
电极
物理化学
工程类
化学
电气工程
复合数
机械工程
作者
Hong Wang,Guoqiang Gao,Lei Deng,Xiaonan Li,Xiao Wang,Qingsong Wang,Guangning Wu
出处
期刊:Coatings
[Multidisciplinary Digital Publishing Institute]
日期:2022-12-26
卷期号:13 (1): 42-42
被引量:5
标识
DOI:10.3390/coatings13010042
摘要
Previous studies have often observed that moisture can promote the lubricity and wear resistance of carbon-metal contact pairs in purely mechanical conditions. However, the damage to pantograph carbon strips was found to be aggravated in rainfall conditions, leading to a much lower service life than anticipated. This suggests a novel influence mechanism of water on carbon-copper (C-Cu) contacts during current-carrying friction. In this paper, the influence mechanism of water on the current-carrying friction characteristics of carbon-copper contacts, including friction coefficient, wear loss, electrical contact resistance, and arc discharge characteristics, was studied under different current levels by controlling the water content of carbon sliders. The results show that the variation trend of current-carrying tribological parameters of C-Cu contacts with water content at 60–100 A is significantly different from that at 20–40 A, which is mainly the result of the competition of lubrication, cooling, and obstruction of current transmission by moisture. The abnormal wear of carbon sliders in the water environment occurs when the current is greater than 60 A, and the main reason for the abnormal wear is the intensification of discharge erosion. In addition, micro-crack propagation under high water content is an important factor in the deterioration of carbon strip properties.
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