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Wear control in a lubricated contact through externally applied electric current

机译:通过外部施加的电流来控制润滑触点的磨损

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摘要

It has been reported earlier that when an electric current is externally applied between two sliding surfaces in a lubricated contact, an electrochemical cell is produced with the lubricant acting as an electrolyte and two sliding surfaces acting as electrodes. In this paper, the effect of an externally applied direct current on friction and wear of a sliding steel pair lubricated by engine oils has been investigated using a ball on disk machine. The current was passed through the contact by connecting the ball and disk specimens to a current source. It has been observed that the magnitude and the direction of current can significantly alter wear of sliding surfaces but does not greatly impact friction coefficients. The wear of the cathode surface decreased while that of the anode surface increased compared to the condition when no * current passed through the contact. It was also observed that wear on anode and cathode surfaces was influenced by lubricant chemistry. The wear reduction on cathode surface is believed to be related to the modification of elemental composition of lubricant derived surface films due to the passage of an electric current.
机译:早先已经报道过,当在润滑接触中在两个滑动表面之间外部施加电流时,以润滑剂作为电解质和两个滑动表面作为电极的方式生产电化学电池。在本文中,已经研究了使用球形滚珠机研究外部施加的直流电对由机油润滑的滑动钢对的摩擦和磨损的影响。通过将球和圆盘样品连接到电流源,使电流通过触点。已经观察到,电流的大小和方向可以显着改变滑动表面的磨损,但是不会极大地影响摩擦系数。与没有电流通过接触的情况相比,阴极表面的磨损减少而阳极表面的磨损增加。还观察到阳极和阴极表面的磨损受到润滑剂化学性质的影响。据认为,由于电流的通过,阴极表面上的磨损减少与润滑剂衍生的表面膜的元素组成的改变有关。

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