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Fabrication and tribological properties of titanium nitride coatings incorporating solid lubricant microreservoirs

机译:含固体润滑剂微储层的氮化钛涂层的制备和摩擦学性能

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摘要

The concept of incorporating microscopic reservoirs within a hard coating for the purpose of solid lubricant storage and supply during wear of interacting surfaces has been investigated in this study. A novel method was devised using ceramic beads (1.5-10 mu m diameter) as placeholders during the deposition of a TiN coating by reactive sputter deposition. A pin-on-disk wear test was used to test these coatings using graphite and sputter-deposited carbon as the solid lubricant, and an alumina counterface. When tested without any lubricant, the presence of the microreservoirs in the TiN coating appeared to degrade the mechanical integrity of the coating leading to rapid failure. With the graphite lubricant present, the frictional behavior ranged from levels similar to the TiN coating alone, to that of graphite alone. Tests of the TiN coating made using 10 mu m beads running against an aluminum counterface showed substantial improvement when the microreservoirs were present. Optical microscopy examination of the wear tracks showed the microreservoirs were generally successful at trapping the graphite lubricant during wear. With a sufficient density and appropriate distribution of the microreservoirs significant improvements in tribological performance can be realized. (c) 2007 Elsevier B.V. All rights reserved.
机译:在这项研究中,已经研究了在硬质涂层中引入微观储层的目的,以便在相互作用表面磨损期间固体润滑剂的储存和供应。设计了一种新方法,在通过反应溅射沉积TiN涂层的过程中,使用陶瓷珠(直径为1.5-10微米)作为占位符。使用针-盘磨损试验来测试这些涂层,这些涂层使用石墨和溅射沉积的碳作为固体润滑剂,以及氧化铝对接面。在没有任何润滑剂的情况下进行测试时,TiN涂层中微储层的存在似乎会降低涂层的机械完整性,从而导致快速失效。在存在石墨润滑剂的情况下,摩擦性能的范围从类似于单独的TiN涂层的水平到单独的石墨的水平。当存在微储层时,使用10μm的小珠靠着铝的对接面制成的TiN涂层的测试显示出了实质性的改善。光学显微镜检查磨损轨迹表明,在磨损过程中,微储层通常能够成功捕获石墨润滑剂。利用足够的密度和适当的微储层分布,可以实现摩擦学性能的显着改善。 (c)2007 Elsevier B.V.保留所有权利。

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