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Tribological properties of vertically aligned carbon nanotube arrays and carbon nanotube sponge

机译:垂直对准碳纳米管阵列和碳纳米管海绵的摩擦学特性

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Carbon nanotube (CNT) films showing excellent mechanical and frictional performances are one of the most competitive candidates for fabricating functional surfaces; in particular, the bulk form of the forest-like vertical aligned CNT (VACNT) film and CNT sponge are idea candidates for making a flexible solid lubricant surface due to the fact that their porous network has a high potential to experience large deformation. In this article, the frictional behavior of the VACNT and CNT sponge against a millimeter scale copper sphere has been studied under various conditions within a home-built system. Due to the intrinsic mechanical instability of VACNTs, a higher friction state than the CNT sponge has been observed, and beyond that, VACNTs typically show a run-in process as a function of sliding circle caused by the formation and rearrangement of quasi-periodic cracks; on the contrary, the friction of the CNT sponge is very stable. In addition, we have pinpointed the effects of sliding velocity, relative humidity, and temperature on friction. The sliding friction was observed to be independent of the velocity and temperature; however, due to the increase in capillary force, friction increases with the increase in relative humidity.
机译:碳纳米管(CNT)膜显示出优异的机械和摩擦性能是最具有竞争力的候选用于制造功能表面中的一个;特别的散装形式林状纵取向CNT(VACNT)膜和CNT海绵是想法候选制造柔性固体润滑剂表面由于它们的多孔网络具有高电势来体验大变形这一事实。在这篇文章中,针对毫米级铜领域的VACNT和CNT海绵的摩擦行为已经在自制系统内的各种条件下研究。由于VACNTs的固有机械不稳定性,更高的摩擦状态比所述CNT海绵已经观察到,并且除此之外,VACNTs通常显示一个磨合过程所引起的准周期裂纹的形成和重排的滑动圈的功能;相反,碳纳米管海绵的摩擦是非常稳定的。此外,我们已经查明滑动速度,相对湿度,和温度对摩擦的影响。观察到滑动摩擦,以独立于速度和温度的;然而,由于增加的毛细管力,具有在相对湿度的增加摩擦增加。

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