Origin of Ultralow Friction and Wear in Ultrananocrystalline Diamond

Loading...
Thumbnail Image

Embargo Date

Related Collections

Degree type

Discipline

Subject

Engineering
Mechanical Engineering

Funder

Grant number

License

Copyright date

Distributor

Related resources

Author

Grierson, D. S.
Gilbert, P.U.P.A.
Sawyer, W. G.
Sumant, A. V.

Contributor

Abstract

The impressively low friction and wear of diamond in humid environments is debated to originate from either the stability of the passivated diamond surface or sliding-induced graphitization/rehybridization of carbon. We find ultralow friction and wear for ultrananocrystalline diamond surfaces even in dry environments, and observe negligible rehybridization except for a modest, submonolayer amount under the most severe conditions (high load, low humidity). This supports the passivation hypothesis, and establishes a new regime of exceptionally low friction and wear for diamond.

Advisor

Date Range for Data Collection (Start Date)

Date Range for Data Collection (End Date)

Digital Object Identifier

Series name and number

Publication date

2008-06-11

Journal title

Volume number

Issue number

Publisher

Publisher DOI

Journal Issues

Comments

Suggested Citation: A.R. Konicek, D.S. Grierson, P.U.P.A. Gilbert, W.G. Sawyer, A.V. Sumant, and R.W. Carpick. (2008). "Origin of Ultralow Friction and Wear in Ultrananocrystalline Diamond." Physical Review Letters. 100, 235502. © 2008 The American Physical Society http://dx.doi.org/10.1103/PhysRevLett.100.235502

Recommended citation

Collection