2008
Optimization of the performance of graded amorphous carbon coatings to steel substrates using PECVD
SOBOTA, Jaroslav, Vilma BURSIKOVA, Jan GROSSMAN, Tomas FORT, Petr KLAPETEK et. al.Základní údaje
Originální název
Optimization of the performance of graded amorphous carbon coatings to steel substrates using PECVD
Název česky
Optimization of the performance of graded amorphous carbon coatings to steel substrates using PECVD
Autoři
SOBOTA, Jaroslav, Vilma BURSIKOVA, Jan GROSSMAN, Tomas FORT, Petr KLAPETEK, Jiri BURSIK, Daniel FRANTA a Vratislav PERINA
Vydání
2nd conference on New Diamond and Nano Carbons 2008, 2008
Další údaje
Jazyk
angličtina
Typ výsledku
Konferenční abstrakt
Obor
10305 Fluids and plasma physics
Stát vydavatele
Tchaj-wan
Utajení
není předmětem státního či obchodního tajemství
Organizační jednotka
Přírodovědecká fakulta
Klíčová slova anglicky
Optimization; performance; graded amorphous carbon coatings; steel substrates; PECVD
Příznaky
Mezinárodní význam
Změněno: 13. 1. 2009 14:28, Mgr. Adrian Stoica, Ph.D.
V originále
For optimization of the performance of the protective coatings there is necessary to optimize the following materials parameters: the elastic modulus, hardness, surface strength, film fracture toughness, impact resistance and film-substrate adhesion. Elastic contact between brittle film and indenting particles may lead to the formation of Hertzian cone cracks. These stresses arise from the radial tensile stresses around the contact area. The resulting strain is difficult to be relaxed and it builds up with increasing film thickness. When the elastic recovery force of the film exceeds a critical value, the stresses in the film are relaxed by cracking or wrinkling resulting in delamination.
Česky
For optimization of the performance of the protective coatings there is necessary to optimize the following materials parameters: the elastic modulus, hardness, surface strength, film fracture toughness, impact resistance and film-substrate adhesion. Elastic contact between brittle film and indenting particles may lead to the formation of Hertzian cone cracks. These stresses arise from the radial tensile stresses around the contact area. The resulting strain is difficult to be relaxed and it builds up with increasing film thickness. When the elastic recovery force of the film exceeds a critical value, the stresses in the film are relaxed by cracking or wrinkling resulting in delamination.
Návaznosti
GA202/07/1669, projekt VaV |
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KAN311610701, projekt VaV |
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