High temperature lubrication of ceramics by surface modification

Results of recent investigations on the friction and wear of ceramics have shown that the surface modification of structural ceramics is an extremely promising method for the high temperature self-lubrication of these materials. Further development of such advanced ceramics requires an understanding...

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Published inSurface & coatings technology Vol. 37; no. 2; pp. 179 - 192
Main Authors Wei, William, Lankford, James, Singer, Irwin, Kossowsky, Ram
Format Journal Article
LanguageEnglish
Published Lausanne Elsevier B.V 01.04.1989
Elsevier
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ISSN0257-8972
1879-3347
DOI10.1016/0257-8972(89)90101-1

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Abstract Results of recent investigations on the friction and wear of ceramics have shown that the surface modification of structural ceramics is an extremely promising method for the high temperature self-lubrication of these materials. Further development of such advanced ceramics requires an understanding of the chemistry and mechanical properties of the tribological films which form on and lubricate the ceramics. In this paper an overview is presented of critical issues which must be addressed in this area. In addition, a phenomenological model of the lubricating properties of such films is discussed in light of recent results on ion-beam-modified Si 3N 4 and partially stabilized zirconia and of current knowledge of surface modification chemistry and structure.
AbstractList Results of recent investigations on the friction and wear of ceramics have shown that the surface modification of structural ceramics is an extremely promising method for the high temperature self-lubrication of these materials. Further development of such advanced ceramics requires an understanding of the chemistry and mechanical properties of the tribological films which form on and lubricate the ceramics. In this paper an overview is presented of critical issues which must be addressed in this area.
Results of recent investigations on the friction and wear of ceramics have shown that the surface modification of structural ceramics is an extremely promising method for the high temperature self-lubrication of these materials. Further development of such advanced ceramics requires an understanding of the chemistry and mechanical properties of the tribological films which form on and lubricate the ceramics. In this paper an overview is presented of critical issues which must be addressed in this area. In addition, a phenomenological model of the lubricating properties of such films is discussed in light of recent results on ion-beam-modified Si 3N 4 and partially stabilized zirconia and of current knowledge of surface modification chemistry and structure.
Results of recent investigations on the friction and wear of ceramics have shown that the surface modification of structural ceramics is an extremely promising method for the high temperature self-lubrication of these materials. Further development of such advanced ceramics requires an understanding of the chemistry and mechanical properties of the tribological films which form on and lubricate the ceramics. An overview is presented of critical issues which must be addressed in this area. In addition, a phenomenological model of the lubricating properties of such films is discussed in light of recent results on ion-beam-modified Si sub 3 N sub 4 and partially stabilized zirconia and of current knowledge of surface modification chemistry and structure. 65 ref.--AA
Author Wei, William
Singer, Irwin
Kossowsky, Ram
Lankford, James
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Issue 2
Keywords Scanning electron microscopy
Phase diagram
Zirconium IV Oxides
Ion beam
Experimental study
Physical properties
Surface structure
Thermal properties
Titanium Carbides
Preparation
Silicon Nitrides
Structure modification
Lubrication
Ceramic materials
Physical method
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Snippet Results of recent investigations on the friction and wear of ceramics have shown that the surface modification of structural ceramics is an extremely promising...
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SubjectTerms Applied sciences
Building materials. Ceramics. Glasses
Ceramic industries
Chemical industry and chemicals
Exact sciences and technology
friction
lubrication
Technical ceramics
wear
Title High temperature lubrication of ceramics by surface modification
URI https://dx.doi.org/10.1016/0257-8972(89)90101-1
https://www.proquest.com/docview/25247882
https://www.proquest.com/docview/746032292
Volume 37
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