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Influence of surface topography of arc-deposited TiN and sputter-deposited WC/C coatings on the initial material transfer tendency and friction characteristics under dry sliding contact conditions

机译:在干式滑动接触条件下,电弧沉积TiN和溅射沉积WC / C涂层的表面形貌对初始材料转移趋势和摩擦特性的影响

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The influence of surface topography of PVD coatings on the initial material transfer tendency and friction characteristics in dry sliding contact conditions has been investigated. A modified scratch test was used to evaluate the material transfer tendency between ball bearing steel and two different PVD coatings, TiN and WC/C, under dry sliding contact conditions. Post test characterisation of the contact surfaces was performed using SEM/EDS and AES in order to map the initiation points and mechanisms for material transfer. The results show that the resulting topography of the PVD coated surfaces is strongly dependent on both the substrate material topography and the topography induced by the coating deposition process used. In sliding contact with a softer surface the coating topography results in a significant material pick-up tendency of the PVD coated surfaces. The material pick-up is mainly controlled by the abrasive action of hard coating asperities and as a result a polishing post treatment of the as-deposited PVD coatings significantly reduces the material pick-up tendency. For the WC/C coating, showing intrinsic low friction properties, the post treatment inhibits the material pick-up and results in a low and stable friction coefficient (mu similar to 0.1). For the TiN coating, that lacks intrinsic low friction properties, the post treatment reduces the material pick-up tendency but has no significant influence on the friction characteristics. This is mainly due to the presence of metallic Ti originating from the macroparticles on the TiN coating which results in a reactive surface that promotes a strong adhesion between the mating surfaces.
机译:研究了干式滑动接触条件下PVD涂层表面形貌对初始材料转移趋势和摩擦特性的影响。在干式滑动接触条件下,使用改进的刮擦试验评估滚珠轴承钢与两种不同的PVD涂层TiN和WC / C之间的材料转移趋势。使用SEM / EDS和AES对接触表面进行测试后表征,以便绘制起始点和材料转移的机理。结果表明,所得的PVD涂层表面形貌在很大程度上取决于基材的形貌和所使用的涂层沉积工艺引起的形貌。在与较软的表面滑动接触时,涂层的形貌导致PVD涂层的表面出现明显的材料吸收趋势。材料的拾取主要由硬涂层粗糙物的磨蚀作用控制,因此,对沉积的PVD涂层进行抛光后处理可大大降低材料的拾取趋势。对于显示出固有的低摩擦性能的WC / C涂层,后处理会抑制材料的吸收,并导致低而稳定的摩擦系数(μ类似于0.1)。对于缺乏固有的低摩擦性能的TiN涂层,后处理可降低材料的吸收趋势,但对摩擦特性没有显着影响。这主要是由于在TiN涂层上存在源自大颗粒的金属Ti,这导致了反应性表面,该表面促进了配合表面之间的牢固粘合。

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