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High-speed electrical sliding wear behaviors of Cu-WS2-graphite-WS2 nanotubes composite

机译:Cu-WS 2 -石墨-WS 2 纳米管复合材料的高速电滑动行为

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Cu-WS_(2)-graphite-WS_(2) nanotubes composite was fabricated by the powder metallurgy hot-pressed method. The effects of electrical current (5–15 A/cm~(2)) and sliding velocity (5–15 m/s) on the electrical wear behaviors of the composite were investigated using a block-on-slip ring wear tester rubbing against Cu-5 wt% Ag alloy ring under 2.5 N/cm~(2) of applied load. The lubricating effect of WS_(2) nanotubes and composition of tribo-film were analyzed. The results demonstrated that the contact resistance decreases but the wear rate increases as electrical current increases, because the adverse effects of electrical current soften the materials at “a-spots” and damage the tribo-film. Due to the adsorption of gaseous molecule film on the tangential direction of slip ring surface, with the rise of sliding velocity, the contact resistance increases while the wear rate reaches the minimum at a sliding velocity of 10 m/s. The reasonable addition of WS_(2) nanotubes into the Cu-WS_(2)-graphite composite to replace WS_(2) powder can result in a reduction of both contact resistance and wear rate. X-ray photoelectron spectroscopy (XPS) analyses revealed that copper oxides, graphite, WS_(2) and WS_(2) nanotubes in the tribo-film play the main lubrication action at the tribo-interface.
机译:采用粉末冶金热压法制备了Cu-WS_(2)-石墨-WS_(2)纳米管复合材料。用滑环式磨损试验仪研究了电流(5-15 A / cm〜(2))和滑动速度(5-15 m / s)对复合材料电磨损行为的影响。在2.5 N / cm〜(2)的载荷下,Cu-5 wt%Ag合金环。分析了WS_(2)纳米管的润滑效果和摩擦膜的组成。结果表明,随着电流的增加,接触电阻减小,但磨损率增加,这是因为电流的不利影响使“ a点”处的材料软化并损坏了摩擦膜。由于气态分子膜在滑环表面的切线方向上的吸附,随着滑动速度的增加,在滑动速度为10 m / s时,接触电阻增加,而磨损率达到最小值。将WS_(2)纳米管合理添加到Cu-WS_(2)-石墨复合物中以替代WS_(2)粉末可导致接触电阻和磨损率降低。 X射线光电子能谱(XPS)分析表明,摩擦膜中的氧化铜,石墨,WS_(2)和WS_(2)纳米管在摩擦界面处起主要润滑作用。

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