Applied Physics Letters · 2001 · 55 citations · 11 references
Tribological CoatingEngineeringMechanical EngineeringWear RateSliding WearCeramic Nanocomposite CoatingsWear-resistant MaterialMaterials ScienceMaterials EngineeringCeramicsCeramic MaterialTitanium Carbide/amorphous HydrocarbonMicrostructureWear ResistanceH NanocompositesMechanical PropertiesSurface ScienceMaterials CharacterizationBimodal FrictionWear Characteristics
Friction and wear characteristics of titanium-containing amorphous hydrocarbon (Ti–C:H) coatings were measured during unlubricated sliding against WC–Co. These Ti–C:H coatings consist of nanocrystalline TiC clusters embedded in an amorphous hydrocarbon (a-C:H) matrix, i.e., they are TiC/a-C:H nanocomposites. The elastic modulus and hardness of the coatings exhibit smooth variations with increasing Ti composition. In contrast, a relatively abrupt transition occurs in the friction coefficient and wear rate of the coatings over a relatively narrow (20–30 at. %) Ti composition range. Our results reveal bimodal friction and wear behaviors for the TiC/a-C:H nanocomposites, a-C:H like at Ti compositions below 20%, and TiC like at Ti compositions above 30%. The two different wear mechanisms that operate as the volume fraction of nanocrystalline TiC clusters changes are discussed.
11
W. C. Oliver, George M. Pharr · Journal of materials research/Pratt's guide to venture capital sources · 1992 · 26.1K citations