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用于富含碳氢化合物环境中通用保护的 Tribocatalytically 活性镍/钴磷膜。

Tribocatalytically-active nickel/cobalt phosphorous films for universal protection in a hydrocarbon-rich environment.

机构信息

Department of Materials Science and Engineering, University of North Texas, Denton, TX, 76203, USA.

出版信息

Sci Rep. 2023 Jul 5;13(1):10914. doi: 10.1038/s41598-023-37531-0.

Abstract

High-contact stresses generated at the sliding interfaces during their relative movement provide a unique combination of local heating and shear- and load-induced compression conditions. These conditions, when involving the sliding of surfaces with certain material characteristics, may facilitate tribochemical reactions with the environment, leading to the formation of a protective, damage-suppressing tribofilm directly at the contact. Here, we employ the electrodeposition process to design a coating composed of a hard cobalt-phosphorous matrix with the inclusion of tribocatalytically-active nickel clusters. The coating is optimized in terms of its relative composition and mechanical characteristics. We demonstrate the excellent tribological performance of the coating in the presence of a hydrocarbon environment, both in the form of a liquid lubricant and as a hydrocarbon-saturated vapor. Characterization of the wear track indicates that the origin of such performance lies in the formation of a protective carbon-based tribofilm on the surface of the coating during sliding. These results contribute to the advancement of knowledge on material transformations in the contact, thus providing a robust and versatile approach to addressing tribological challenges in mechanical systems.

摘要

在相对运动过程中,滑动界面上产生的高接触应力提供了局部加热以及剪切和负载引起的压缩条件的独特组合。在涉及具有一定材料特性的表面滑动的情况下,这些条件可能促进与环境的摩擦化学相互作用,从而在接触处直接形成保护性、抑制损伤的摩擦膜。在这里,我们采用电沉积工艺设计了一种涂层,该涂层由具有包含摩擦催化活性镍簇的硬钴-磷基体组成。该涂层在相对组成和机械特性方面进行了优化。我们展示了在存在碳氢化合物环境时,该涂层的优异摩擦学性能,无论是以液体润滑剂的形式还是以碳氢化合物饱和蒸气的形式。对磨损轨道的表征表明,这种性能的起源在于在滑动过程中,涂层表面形成了一种保护性的基于碳的摩擦膜。这些结果有助于提高对接触处材料转变的认识,从而为解决机械系统中的摩擦学挑战提供了一种强大而通用的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc8c/10322986/f9aa9bbfa5c5/41598_2023_37531_Fig1_HTML.jpg

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