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Article

Nano-Structured Carbide-Derived Carbon Films and Their Tribology

Michael McNallan1( )Daniel Ersoy1Ranyi Zhu1Allen Lee1Christopher White1Sascha Welz1Yury Gogotsi2Ali Erdemir3Andriy Kovalchenko3
CME Department M/C 246, University of Illinois at Chicago, 842 W. Taylor St., Chicago, IL 60607, USA
Department of Materials Science and Engineering and A. J. Drexel Nanotechnology Institute, Drexel University, Philadelphia, PA 19104, USA
Energy Technology Division, Argonne National Laboratory, Argonne, IL 60439, USA
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Abstract

Carbide-derived carbon (CDC) is a form of carbon produced by reacting metal carbides, such as SiC or TiC, with halogens at temperatures high enough to produce fast kinetics, but too low to permit the rearrangement of the carbon atoms into an equilibrium graphitic structure. The structure of CDC is derivative of the original carbide structure and contains nanoscale porosity and both sp2 and sp3 bonded carbon in a variety of nanoscale structures. CDC can be produced as a thin film on hard carbides to improve their tribological performance. CDC coatings are distinguished by their low friction coefficients and high wear resistance in many important industrial environments and by their resistance to spallation and delamination. The tribology of CDC coatings on SiC surfaces is described in detail.

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Tsinghua Science and Technology
Pages 699-703

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Cite this article:
McNallan M, Ersoy D, Zhu R, et al. Nano-Structured Carbide-Derived Carbon Films and Their Tribology. Tsinghua Science and Technology, 2005, 10(6): 699-703. https://doi.org/10.1016/S1007-0214(05)70138-3

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Received: 16 March 2005
Published: 01 December 2005
© Tsinghua University Press 2005