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The correlation between the hardness and tribological behaviour of electroplated chromium coatings sliding against ceramic and steel counterparts

机译:与陶瓷和钢对应物滑动的电镀铬涂层的硬度与摩擦学性能之间的相关性

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Electroplated chromium (Cr) coatings with different hardness were clectrodeposited on steel substrate through adjusting the concentration of rare earth in a Sargent bath (CrO3 250 g/l, H2SO4 2.5 g/l). The results show that with a Si3N4 ceramic counterpart, the wear rate of electroplated Cr coatings increases with the increase of the hardness owing to the delamination wear mechanism; while with a steel counterpart, the wear rate of electroplated Cr coatings decreases with increasing hardness thanks to the abrasion wear mechanism. The wear mechanism may be dictated by the adhesive force between the sliding pairs and the possibility of abrasive particles formation that weak adhesive force between the ceramic counterpart and electroplated Cr coatings can hardly result in the adhesion, transfer of material and formation of abrasive particles on the ttibosurface of the electroplated Cr coating, and the frictional shear energy tends to transform to dislocation and deformation energy stored inside the material instead of friction heat; therefore, the delamination wear is more likely to occur on the tribosurface. Whereas, the strong adhesive force between the steel counterpart and electroplated Cr coatings will result in the adhesion, transfer of material and formation of the abrasive particles on the tribosurface, the frictional shear energy would be allowed to transform to cutting and plough energy; hence, the adhesive and abrasive wear may occur. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过调节Sargent镀液中的稀土浓度(CrO3 250 g / l,H2SO4 2.5 g / l),将不同硬度的电镀铬(Cr)涂层电沉积在钢基材上。结果表明,采用Si3N4陶瓷涂层时,由于分层磨损机理,电镀Cr涂层的磨损率随硬度的增加而增加。而对于钢制对应物,由于磨损磨损机制,电镀铬涂层的磨损率随着硬度的增加而降低。磨损机理可能取决于滑动副之间的粘附力和形成磨粒的可能性,即陶瓷对应物和电镀Cr涂层之间的弱粘附力几乎不会导致粘附,材料转移和磨粒在表面上的形成。电镀铬涂层的表面,摩擦剪切能趋向于转变为存储在材料内部的位错和形变能,而不是摩擦热。因此,在摩擦表面上更可能发生分层磨损。钢材对应物与电镀Cr涂层之间的强粘附力将导致摩擦表面上的粘附,材料转移和磨料颗粒的形成,而摩擦剪切能将转化为切削能和犁能。因此,可能会发生粘合剂和磨料磨损。 (c)2006 Elsevier B.V.保留所有权利。

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