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Patterning of Hard Coatings for Incorporation of Solid Lubricant Microreservoirs

机译:掺入固体润滑剂微储层的硬质涂层的图案

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Hard coatings containing microscopic reservoirs for solid lubricant storage have the potential to advance the development of dry, self-lubricating coatings. In the present study we have investigated several methods for fabricating hard coatings that incorporate microscopic reservoirs. These methods all involve the use of placeholders on the substrate surface that are later removed after deposition of the hard coating. One method uses a solution containing ceramic beads, while the second method uses conventional photolithography methods. Coatings using both of these methods were fabricated using TiN as the hard coating. The effectiveness of the microreservoirs for solid lubricant storage was examined by conducting pin-on-disk test using various solid lubricants, including graphite and indium. The performance of coatings with random arrangements of microreservoirs was scattered while samples with the ordered arrangements of microreservoirs all performed well. 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, the significant improvements in tribological performance can be realized.
机译:包含用于固体润滑剂存储的微观储层的硬质涂层具有促进干燥,自润滑涂层发展的潜力。在本研究中,我们研究了几种结合了微观储层的硬涂层制备方法。这些方法都涉及在基底表面上使用占位符,这些占位符随后在硬涂层沉积后被去除。一种方法使用包含陶瓷珠的溶液,而第二种方法使用常规的光刻方法。使用TiN作为硬涂层来制造使用这两种方法的涂层。通过使用包括石墨和铟在内的各种固体润滑剂进行销钉盘测试,检验了微储器用于固体润滑剂存储的有效性。随机排列微储层的涂料的性能分散,而排列有序微储层的样品表现良好。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集层分布,可以实现摩擦学性能的显着改善。

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