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Tribology Of Diamond-Like Carbon Films: Fundamentals And Applications - Isbn:9780387498911

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  • Book Title: Tribology of Diamond-like Carbon Films: Fundamentals and Applications
  • ISBN 13: 9780387498911
  • ISBN 10: 0387498915
  • Author: Christophe Donnet, Ali Erdemir
  • Category: Technology & Engineering
  • Category (general): Other
  • Publisher: Springer Science & Business Media
  • Format & Number of pages: 664 pages, book
  • Synopsis: Tribological. Performance. of. DLC. Coatings. H. Ronkainen and K. Holmberg Abstract Diamond-like carbon (DLC) ... The hydrogen-free ta-C films on the other hand can survive in higher temperatures, even though the friction coefficient ...

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Tribology of Diamond-like Carbon Films

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English | 10 Dec. 2007 | ISBN: 0387302646 | 675 Pages | PDF | 21 MB

This book highlights some of the most important structural, chemical, mechanical and tribological characteristics of DLC films. It is particularly dedicated to the fundamental tribological issues that impact the performance and durability of these coatings. The book provides reliable and up-to-date information on available industrial DLC coatings and includes clear definitions and descriptions of various DLC films and their properties.

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Tribology of Diamond-like Carbon Films: Fundamentals and Applications


Tribology of Diamond-like Carbon Films: Fundamentals and Applications
Springer | ISBN: 0387302646 | 2007-12-10 | PDF | 664 pages | 17 Mb


Since their initial discovery, Diamond Like Carbon films have enjoyed an overwhelming interest from both the scientific and industrial community. This book highlights some of the most important structural, chemical, mechanical and tribological characteristics of DLC films. It is particularly dedicated to the fundamental tribological issues that impact the performance and durability of these coatings in numerous industrial applications including automotive, microelectronics, aerospace, biomedical, textile, and manufacturing. As a result of numerous systematic studies, there now exist reliable models, computer simulations, and experimental findings that demonstrate some of the lowest friction and wear coefficients for these films. Accordingly, this book covers some of the most important tribological findings on DLC films and emphasizes their application in mechanical systems ranging in size from nano/micro (like MEMS, NEMS) to meso/macro scale devices (like bearings, gears, aerospace mechanisms, liquid/solid lubricated engine parts and components). The book includes contributions from some of the most prominent world experts representing academia, national laboratories, and industrial companies.

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Donnet C, Erdemir A

Donnet C. Erdemir A. (Eds.) Tribology of Diamond-like Carbon Films: Fundamentals and Applications

Springer Science + Business Media, LLC, New York, 2008, 664 pages
Since their initial discovery, Diamond Like Carbon films have enjoyed an overwhelming interest from both the scientific and industrial community. This book highlights some of the most important structural, chemical, mechanical and tribological characteristics of DLC films. It is particularly dedicated to the fundamental tribological issues that impact the performance and durability of these coatings in numerous industrial applications including automotive, microelectronics, aerospace, biomedical, textile, and manufacturing. As a result of numerous systematic studies, there now exist reliable models, computer simulations, and experimental findings that demonstrate some of the lowest friction and wear coefficients for these films. Accordingly, this book covers some of the most important tribological findings on DLC films and emphasizes their application in mechanical systems ranging in size from nano/micro (like MEMS, NEMS) to meso/macro scale devices (like bearings, gears, aerospace mechanisms, liquid/solid lubricated engine parts and components). The book includes contributions from some of the most prominent world experts representing academia, national laboratories, and industrial companies.

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This book provides a clear and understandable text for users and developers of advanced engineered materials, particularly in the area of thin films, and addresses fundamentals of modifying the optical, electrical, photo-electric, triboligical, and corrosion resistance of sol.

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Metal oxides are an important class of materials: from both scientific and technological
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Springer-Verlag, 1975, 125p.
The Electrical Resistivity of Pure and Gas Covered Metal Films
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Sintering is a method for manufacturing components from ceramic or metal powders by heating the powder until the particles adhere to form the component required. The resulting products are characterized by an enhanced density and strength, and are used in a wide range of ind.

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Low-Dimensional Antiferromagnetic Oxides: An Overview
Growth of Antiferromagnetic Oxide Thin Films
Dichroism in X-ray Absorption for the Study of Antiferromagnetic Materials
Antiferromagnetic Oxide Films on Nonmagnetic Substrates
Exchange Bias by Antiferromagnetic Oxides
Theory of Ferr.

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Tribology of Diamond-like Carbon Films


Tribology of Diamond-like Carbon Films: Fundamentals and Applications by Christophe Donnet
English | 10 Dec. 2007 | ISBN: 0387302646 | 675 Pages | PDF | 21 MB


This book highlights some of the most important structural, chemical, mechanical and tribological characteristics of DLC films. It is particularly dedicated to the fundamental tribological issues that impact the performance and durability of these coatings.
The book provides reliable and up-to-date information on available industrial DLC coatings and includes clear definitions and descriptions of various DLC films and their properties.

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Fundamentals on Tribology of Plasma-Deposited Diamond-Like Carbon Films - Industrial Plasma Technology: Applications from Environmental to Energy Tech

26. Fundamentals on Tribology of Plasma-Deposited Diamond-Like Carbon Films
  1. Prof. Yoshinobu Kawai Research Professor 3 ,
  2. Prof. Hideo Ikegami Professor Emeritus 4,5 ,
  3. Prof. Noriyoshi Sato Professor Emeritus 6 ,
  4. Prof. Akihisa Matsuda Special Guest Professor Director 7,8 ,
  5. Prof. Kiichiro Uchino Professor 9 ,
  6. Prof. Masayuki Kuzuya Dean Professor 10 and
  7. Prof. Akira Mizuno Professor 11
  1. Julien Fontaine 1 and
  2. Christophe Donnet 2

Published Online: 7 OCT 2010

Copyright © 2010 Wiley-VCH Verlag GmbH & Co. KGaA

Industrial Plasma Technology: Applications from Environmental to Energy Technologies How to Cite

Fontaine, J. and Donnet, C. (2010) Fundamentals on Tribology of Plasma-Deposited Diamond-Like Carbon Films, in Industrial Plasma Technology: Applications from Environmental to Energy Technologies (eds Y. Kawai, H. Ikegami, N. Sato, A. Matsuda, K. Uchino, M. Kuzuya and A. Mizuno), Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, Germany. doi: 10.1002/9783527629749.ch26

Editor Information

Kyushu University, Interdisciplinary Graduate School of Engineering Sciences, Kasugakoen 6-1, Kasuga, 816-8580, Japan

Technowave Inc. 13-18 Aoi 1-chome, Higashi-ku, Nagoya-shi Aichi 461-0004, Japan

Nagoya University and National Institute for Fusion Science, Shiga 24-601, Nagoya 462-0037, Japan

Graduate School of Engineering, Tohoku University, Kadan 4-17-113, Sendai 980-0815, Japan

Osaka University, Grad. School of Engineering Science, Machikaneyama-cho 1-3, Toyonaka, Osaka 565-0871, Japan

Osaka University, Graduate School of Engineering Science, Toyonaka, Osaka, 560-8531, Japan

Kyushu University, Interdisciplinary Graduate School of Engineering Sciences, Kasugakoen 6-1, Kasuga, Fukuoka 816-8580, Japan

Matsuyama University, Department of Pharmaceutical Physical Chemistry, Faculty of Pharmaceutical Sciences, 4-2 Bunkyo-cho, Matsuyama, Ehime 790-8578, Japan

Toyohashi University of Technology, Department of Ecological Engineering, Hibarigaoka 1-1, Tempaku-cho, Toyohashi, Aichi, 441–8580, Japan

Author Information

Ecole Centrale de Lyon, LTDS (UMR CNRS 5513), Ecully Cedex, 69134, France

Université, Jean Monnet, LHC (UMR CNRS 5516), Saint-Etienne, 42000, France

Publication History
  1. Published Online: 7 OCT 2010
  2. Published Print: 10 MAR 2010
ISBN Information

Print ISBN: 9783527325443

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