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Tribological Properties of Titanium Plate Coated with Carbon Nanotubes

机译:碳纳米管包覆钛板的摩擦学性能

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This study investigated the tribological property and wear behavior of pure titanium (Ti) plate coated with un-bundled multi-walled carbon nanotubes (MWCNTs). The network-structured MWCNT films were formed on Ti substrate, and their tribological properties were examined by the ball-on-disk wear test equipment under dry sliding condition. SUS304 stainless steel ball was used as a counterpart material in this test. The mean friction coefficient of the Ti plate coated with MWCNTs was remarkably lower and stable compared to the as-received pure Ti plate without any coating films. SEM-EDS analysis showed the network-structured MWCNT films obviously remained after wear test for 3.6 ks in sliding and no seizure phenomena with the SUS304 ball. The above excellent tribological performance was due to CNTs self-lubricant, their bearing effects and the strong metallurgical bonding between Ti plate and MWCNT films by annealing.
机译:这项研究调查了纯钛(Ti)板的无摩擦多壁碳纳米管(MWCNTs)涂层的摩擦学性能和磨损行为。在Ti衬底上形成网络结构的MWCNT膜,并在干滑条件下用圆盘磨损试验设备检查其摩擦学性能。在此测试中,使用SUS304不锈钢球作为替代材料。与原样不带任何涂膜的纯钛板相比,涂有MWCNT的Ti板的平均摩擦系数明显较低且稳定。 SEM-EDS分析表明,经过3.6 ks的滑动磨损试验后,网络结构的MWCNT薄膜明显保留,SUS304球无卡死现象。上述优异的摩擦学性能归因于CNTs的自润滑性,它们的支承效果以及通过退火使Ti板与MWCNT膜之间的牢固的冶金结合。

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