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首页> 外文期刊>Tribology letters >Effect of Carbon Diffusion on Friction and Wear Behaviors of Diamond-Like Carbon Coating Against Germanium in Boundary Base Oil Lubrication
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Effect of Carbon Diffusion on Friction and Wear Behaviors of Diamond-Like Carbon Coating Against Germanium in Boundary Base Oil Lubrication

机译:碳扩散对边界基础油润滑锗金刚石碳涂层摩擦磨损行为的影响

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摘要

Diamond-like carbon (DLC) coatings are designed to work under severe lubrication conditions. Depending on working environment, lubrication condition, and counterpart material, DLC coatings can exhibit crucial variations in their tribological behaviors. In the search of a counterpart material to improve tribological performances of DLC coatings in desired environment, we found out in previous work that carbon diffusion is an important parameter that influences the tribological behaviors of amorphous hydrogenated (a-C:H) coating in boundary lubrication. a-C:H coating exhibits high wear against steel counterpart material that has a high carbon affinity/solubility, while its exhibits lower wear against chromium counterpart material that has lower carbon affinity/solubility than steel. These recent findings imply that consideration of the carbon affinity/solubility when choosing a counterpart material for a-C:H coating in boundary lubrication might be of significant importance to improve tribological performances of a-C:H coating. This research investigates tribological behaviors of a-C:H coating against germanium counterpart material that has extremely low carbon affinity/solubility. Results show that there is no atomic interaction between a-C:H coating and germanium during friction and wear test, followed with a very low wear of a-C:H coating.
机译:菱形碳(DLC)涂层设计用于在严重的润滑条件下工作。根据工作环境,润滑条件和对应材料,DLC涂层可以在其摩擦学行为中表现出至关重要的变化。在寻找对应物质以改善所需环境中DLC涂层的摩擦学性能,我们在先前的工作中发现了碳扩散是影响边界润滑中无定形氢化(A-C:H)涂层的摩擦学行为的重要参数。 A-C:H涂层对钢对应物材料具有高耐碳亲和力/溶解度的高磨损,而其表现出较低的磨料对铬对应物材料具有低于钢的碳亲和/溶解度。 These recent findings imply that consideration of the carbon affinity/solubility when choosing a counterpart material for a-C:H coating in boundary lubrication might be of significant importance to improve tribological performances of a-C:H coating.本研究研究了A-C:H涂层对锗对应物材料的摩擦学行为,具有极低的碳亲和力/溶解度。结果表明,在摩擦和磨损试验期间,A-C:H涂层和锗之间没有原子相互作用,随之而来的A-C:H涂层非常低。

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