Hostname: page-component-76fb5796d-zzh7m Total loading time: 0 Render date: 2024-04-27T03:17:51.687Z Has data issue: false hasContentIssue false

A Nanoscratch Method for Assessing Wear of Metal Carbide-Metal Nacreous Nanostructures

Published online by Cambridge University Press:  17 March 2011

Rachel W. Obbard
Affiliation:
University of New Hampshire Materials Science & Engineering Program Kingsbury Hall Durham, NH 03824-3591
Todd S. Gross
Affiliation:
University of New Hampshire Materials Science & Engineering Program Kingsbury Hall Durham, NH 03824-3591
Get access

Abstract

The wear resistance of metal carbide-metal nacreous nanostructures is compared to that of a solid metal carbide hard coating. A reciprocating nanoscratch method has been developed which allows the assessment of wear resistance of the film independent of substrate type or film-substrate adhesion. A series of nominally 1 micron thick TiC-based multilayer films on Si substrates were produced using RF magnetron sputtering. A scratch protocol consisting of 70 reciprocal scratches each 9.5 m m in length was applied. Data reduction techniques were used to remove the effects of sample tilt and drift. The resulting normal displacement as a function of scratch cycles is used to compare the wear of different films on Si <111> substrates. Specific wear characteristics related to film morphology are examined. This investigation showed that this nanoscratch technique holds promise as a thin film wear characterization technique.

Type
Research Article
Copyright
Copyright © Materials Research Society 2002

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1. He, J.L., Wang, J., Li, W.Z., Li, H.D., “Simulation of nacre with TiN/Pt multilayers and a study of their mechanical properties,” Materials Science and Engineering B49(1997)128134 Google Scholar
2. Wang, J., Li, W.Z., Li, H.D., Shi, B., Luo, J.B., “Nanoindentation study on the mechanical properties of TiC/Mo multilayers deposited by ion beam assisted deposition,” Surface and Coatings Technology 128–129 (2000) 161165 Google Scholar
3. Wang, J., Li, W., Li, H., “Preparation and characterization of superhard TiC/Mo multilayers,” Kluwer Academic Publishers 0022-2461 (2000) 26892693 Google Scholar
4. Li, X., Bhushan, B., “Micro/nanomechanical characterization of ceramic films for microdevices,” Thin Solid Films 340 1-2 (1999) 210217 Google Scholar
5. Li, X., Diao, D., Bhushan, B., “Fracture mechanisms of thin amorphous carbon films in nanoindentation,” Acta Mater. 45 11 (1997) 44534461 Google Scholar