Contact damage evolution in diamondlike carbon coatings on ductile substrates

dc.contributor.authorSingh, R.
dc.contributor.authorTilbrook, M.
dc.contributor.authorXie, Z.
dc.contributor.authorBendavid, A.
dc.contributor.authorMartin, P.
dc.contributor.authorMunroe, P.
dc.contributor.authorHoffman, M.
dc.date.issued2008
dc.description.abstract<jats:p>A diamondlike carbon (DLC) thin film was deposited onto a stainless steel substrate using a plasma-enhanced chemical vapor deposition (PECVD) process. Nanoindentation, coupled with focused-ion-beam (FIB) milling, was used to investigate contact-induced deformation and fracture in this coating system. Following initial elastic contact between the coating and the indenter and apparent plastic yield of the substrate, pop-ins were observed in the load–displacement curve, indicative of coating fracture. However, FIB cross-sectional images of indentations revealed the presence of ring, radial, and lateral cracks at loads much lower than the critical load for the first observed pop-ins. Finite element modeling was used, and the properties of the substrate and the film were calibrated by fitting the simulated load–displacement curves to experimental data. Then, based upon the experimental observations of damage evolution in this coating system, the stress distributions relevant to initiate ring, radial, and lateral cracks in the coating were ascertained. Furthermore, the effects of substrate yield stress and coating residual stress on the formation of these cracks were investigated.</jats:p>
dc.description.statementofresponsibilityRajnish K. Singha, M.T. Tilbrook, Z.H. Xie, A. Bendavid, P.J. Martin, P. Munroe and M. Hoffman
dc.identifier.citationJournal of Materials Research, 2008; 23(1):27-36
dc.identifier.doi10.1557/JMR.2008.0030
dc.identifier.issn0884-2914
dc.identifier.issn2044-5326
dc.identifier.urihttp://hdl.handle.net/2440/74920
dc.language.isoen
dc.publisherMaterials Research Society
dc.rightsCopyright © Materials Research Society 2008
dc.source.urihttps://doi.org/10.1557/jmr.2008.0030
dc.subjectDiamond
dc.subjectIon beam analysis
dc.subjectThin film
dc.titleContact damage evolution in diamondlike carbon coatings on ductile substrates
dc.typeJournal article
pubs.publication-statusPublished

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