STOICA, Adrian, Vilma BURŠÍKOVÁ, Lukáš KELAR and Tomáš NOVOTNÝ. Study of the Mechanical Properties of Diamond-like Carbon Coatings on Polymer Substrates. In Frontiers in Low Temperature Plasma Diagnostic 8. 1st ed. Brno: JČMF, 2009, p. 93. ISBN 978-80-214-3875-0.
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Basic information
Original name Study of the Mechanical Properties of Diamond-like Carbon Coatings on Polymer Substrates
Name in Czech Study of the Mechanical Properties of Diamond-like Carbon Coatings on Polymer Substrates
Authors STOICA, Adrian, Vilma BURŠÍKOVÁ, Lukáš KELAR and Tomáš NOVOTNÝ.
Edition 1. vyd. Brno, Frontiers in Low Temperature Plasma Diagnostic 8, p. 93-93, 2009.
Publisher JČMF
Other information
Original language English
Type of outcome Proceedings paper
Field of Study 10302 Condensed matter physics
Country of publisher Czech Republic
Confidentiality degree is not subject to a state or trade secret
Organization unit Faculty of Science
ISBN 978-80-214-3875-0
Keywords (in Czech) Mechanical Properties; Diamond-like Carbon; Coatings; Polymer Substrates
Keywords in English Mechanical Properties; Diamond-like Carbon; Coatings; Polymer Substrates
Tags coatings, Diamond-like Carbon, mechanical properties, Polymer Substrates
Tags Reviewed
Changed by Changed by: doc. RNDr. Vilma Buršíková, Ph.D., učo 2418. Changed: 26/6/2009 12:11.
Abstract
We focused our work on optimizing the deposition parametres to improve the coatings adhesion to the polymer surface. Hzdrogenate amorphous carbon (a-C:H) and nitrogen incorporated hzdrogenated amorphous carbon (a-C:H:N) films were deposited on polycarbonate, glass reinforced PPS, and BMC substrates by r.f. plasma enhanced chemical vapor deposition (PECVD) A mixture of hexamethyldisiloxane (HMDSO) and CH4/N2/H2 gases was utilized to reduce the internal compressive stress of the deposited films.
Abstract (in Czech)
We focused our work on optimizing the deposition parametres to improve the coatings adhesion to the polymer surface. Hzdrogenate amorphous carbon (a-C:H) and nitrogen incorporated hzdrogenated amorphous carbon (a-C:H:N) films were deposited on polycarbonate, glass reinforced PPS, and BMC substrates by r.f. plasma enhanced chemical vapor deposition (PECVD) A mixture of hexamethyldisiloxane (HMDSO) and CH4/N2/H2 gases was utilized to reduce the internal compressive stress of the deposited films.
Links
GA202/07/1669, research and development projectName: Depozice termomechanicky stabilních nanostrukturovaných diamantu-podobných tenkých vrstev ve dvojfrekvenčních kapacitních výbojích
Investor: Czech Science Foundation, Deposition of thermomehanically stable nanostructured diamond-like thin films in dual frequency capacitive discharges
KAN311610701, research and development projectName: Nanometrologie využívající metod rastrovací sondové mikroskopie
Investor: Academy of Sciences of the Czech Republic
MSM4977751303, plan (intention)Name: Predikce poruch heterogenních materiálů, komponent mechanických a biomechanických systémů.
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