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Fracture behaviour of nc-TiAlN/a-Si<sub>3</sub>N<sub>4</sub> nanocomposite coating during nanoimpact test
13
Citations
35
References
2016
Year
Materials ScienceMaterials EngineeringFracture ProbabilityMaterial AnalysisEngineeringMechanical PropertiesMaterials FabricationMechanical EngineeringMaterials CharacterizationFracture BehaviourCyclic Nanoimpact TestsMicrostructure-strength RelationshipHardnessMaterial PerformanceCyclic Impact LoadsMicrostructureProtective CoatingStructural Materials
Cyclic nanoimpact tests were carried on nc-TiAlN/a-Si 3 N 4 nanocomposite, TiN and multilayered TiN/nanocomposite (NC) coatings to evaluate their resistance to fracture under cyclic impact loads. Fracture behaviour of the coatings was ascertained from fracture probability obtained from time-depth curves and focus ion beam milling images of resulting indentation impressions. TiN coating mainly showed intercolumnar cracks while the other coatings showed other modes of cracking, that is, lateral, inclined, bending, edge cracks, during testing. The performance ranking of the coatings, TiN > TiN/NC > nc-TiAlN/a-Si 3 N 4 , is linked to their β 0 value, representing relative indentation depth of the coating-substrate composite hardness system at which the fractional hardness improvement equal to 50% of the maximum is retained and also their corresponding microstructure. Apart from enabling prediction of fracture resistance of the coatings, these studies provide useful insights into design and selection of coating materials for targeted machining applications.
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