湿态对电流作用下碳带和金属接触丝磨损性能的影响

Xiao Wang, Zefeng Yang, Guoqiang Gao, Hong Wang, Lei Deng, Wenfu Wei
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引用次数: 1

摘要

受电弓是列车从高压输电架空接触线路获取电力的唯一装置。受电弓碳条在载流摩擦中的磨损与降雨等多种工作环境有关。碳条由于其自身的孔隙结构,在潮湿条件下具有不同程度的吸水性。大量的现场经验表明,在潮湿天气下,碳条的磨损急剧增加,导致其使用时间大大低于预期。在严重的情况下,带钢的磨损失效将影响列车运行过程中的稳定集流。接触副的异常失效使载流摩擦系统不能满足实际和长期的需求。因此,研究受电弓碳带在湿工况下的电摩擦行为,对保障列车安全运行,提高国民经济水平具有重要意义。本文通过定量控制添加到碳带中的水分含量来模拟不同程度的湿润条件。利用自制的滑动往复载流摩擦试验台,通过改变碳带含水率、电流和法向载荷,研究了水在碳带与金属接触丝电流界面上的劣化规律和损伤机理。结果表明:在低电流条件下,随着碳带含水量的增加,碳带的磨损体积和摩擦系数先增大后减小;表明有一定的含水率范围,使磨损更严重。此外,在带材含水量相同的情况下,随着电流的增大,磨损情况更加严重,铜接触丝在带材表面的物质转移现象更加明显。而正常载荷的增加往往会减缓磨损程度。研究内容对分析潮湿地区受电弓带材磨损失效具有一定的参考意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Wet Condition on the Wear Performance of Carbon Strip and Metal Contact Wire with Electric Current
Pantograph is the only device used by trains to obtain power from overhead contact line of high-voltage transmission. The abrasion of the pantograph carbon strip in current-carrying friction is related to various working environments such as rainfall. Carbon strips absorb water to varying degrees in wet condition due to its own pore structure of the material. Extensive field experience shows that the abrasion of carbon strips has increased sharply in wet weather, resulting in its service time is much lower than expected. In severe cases, the abrasion failure of strips will affect the stable current collection during the train operation. Abnormal failure of the contact pair makes the current-carrying friction system unable to meet the real and long-term demands. Therefore, it is of great significance to study the electrical friction behaviors of pantograph carbon strip in the wet condition for ensuring the safe operation of trains and improving the national economy. In this paper, by quantitatively controlling the water content added to the carbon strip to simulate different levels of wet conditions. Using a self-made sliding reciprocating current-carrying friction test bench to study the deterioration rule and damage mechanism of water on the current interface between carbon strip and metal contact wire through changing the water content of the carbon strip, current and normal load. The results show that under the condition of low current, the wear volume and friction coefficient of carbon strips increase first and then decrease with increasing water content added to the strips. It indicates that there is a range of water content, which makes the wear more serious. In addition, under the same water content of the strip, the abrasion situation becomes more serious with the increase of current, and the material transfer phenomenon of copper contact wire on the surface of strips is more obvious. And the increase in normal load tends to slow down the degree of wear. The research content has certain reference significance for the analysis of pantograph strip abrasion failure in wet areas.
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