Phase Formation in the Ti-Y-O System Formed Using High-Energy Methods; Applied Mechanics and Materials; Vol. 756 : Mechanical Engineering, Automation and Control Systems (MEACS2014)

Bibliografiset tiedot
Parent link:Applied Mechanics and Materials: Scientific Journal
Vol. 756 : Mechanical Engineering, Automation and Control Systems (MEACS2014).— 2015.— [P. 243-249]
Yhteisötekijä: Томский политехнический университет
Muut tekijät: Ivanov Yu. F. Yuriy Fedorovich, Petrikova E. A., Teresov A. D., Klopotov A. A., Gromov V. E., Budovskikh E. A., Kalashnikov M. P. Mark Petrovich, Klopotov V. D. Vladimir Dmitrievich
Yhteenveto:Title screen
A surface alloy of the yttrium/titanium system, enriched with oxygen atoms, has been developed using high-energy methods. Formation of a multilayer multiphase submicron-and nanoscale structure has been revealed. A substantial increase in the microhardness (by≈3 times), a decrease in the friction coefficient (more than by 2 times) and the wear rate (by≈3 times) of the doped layer have been revealed.
Режим доступа: по договору с организацией-держателем ресурса
Kieli:englanti
Julkaistu: 2015
Sarja:Material Engineering and Technologies
Aiheet:
Linkit:http://dx.doi.org/10.4028/www.scientific.net/AMM.756.243
Aineistotyyppi: Elektroninen Kirjan osa
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=641332

MARC

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330 |a A surface alloy of the yttrium/titanium system, enriched with oxygen atoms, has been developed using high-energy methods. Formation of a multilayer multiphase submicron-and nanoscale structure has been revealed. A substantial increase in the microhardness (by≈3 times), a decrease in the friction coefficient (more than by 2 times) and the wear rate (by≈3 times) of the doped layer have been revealed. 
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