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Erschienen in: Mechanics of Composite Materials 5/2017

09.11.2017

Estimation of the Friction Coefficient of a Nanostructured Composite Coating

verfasst von: S. V. Shil’ko, D. A. Chernous, T. V. Ryabchenko, V. V. Hat’ko

Erschienen in: Mechanics of Composite Materials | Ausgabe 5/2017

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Abstract

The frictional-mechanical properties of a thin polymer-ceramic coating obtained by gas-phase impregnation of nanoporous anodic alumina with a fluoropolymer (octafluorocyclobutane) have been investigated. The coefficient of sliding friction of the coating is predicted based on an analysis of contact deformation within the framework of the Winkler elastic foundation hypothesis and a three-phase micromechanical model. It is shown that an acceptable prediction accuracy can be obtained considering the uniaxial strain state of the coating. It was found that, on impregnation by the method of plasmachemical treatment, the relative depth of penetration of the polymer increased almost in proportion to the processing time. The rate and maximum possible depth of penetration of the polymer into nanoscale pores grew with increasing porosity of the alumina substrate.

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Metadaten
Titel
Estimation of the Friction Coefficient of a Nanostructured Composite Coating
verfasst von
S. V. Shil’ko
D. A. Chernous
T. V. Ryabchenko
V. V. Hat’ko
Publikationsdatum
09.11.2017
Verlag
Springer US
Erschienen in
Mechanics of Composite Materials / Ausgabe 5/2017
Print ISSN: 0191-5665
Elektronische ISSN: 1573-8922
DOI
https://doi.org/10.1007/s11029-017-9688-2

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