Use this url to cite publication: https://hdl.handle.net/20.500.14911/143001
Strengthening of machine elements used in abrasive environment by hard layers alloying
Publication Type (CRIS)
Straipsnis konferencijos medžiagoje kitoje duomenų bazėje / Article in conference proceedings in other databases (P1c)
Publication Type (eLABa)
Straipsnis konferencijos darbų leidinyje kitoje DB / Article in conference proceedings in other DB (P1c)
Author(s)
| Author | Affiliation |
|---|---|
Jankauskas, Vytenis | Aleksandro Stulginskio universitetas |
Kreivaitis, Raimondas | Aleksandro Stulginskio universitetas |
Klimas, V. | Aleksandro Stulginskio universitetas |
Title [en]
Strengthening of machine elements used in abrasive environment by hard layers alloying
V. Jankauskas, R. Kreivaitis, V. Klimas, V. Varnauskas
Is part of
Mechanika -2006: Proceedings of the 11th international conference, April 6-7, 2006 Kaunas University of Technology, Lithuania / Kaunas University of Technology, Lithuanian Academy of Sciences, IFToMM National Committee of Lithuania and Baltic Association of Mechanical Engineering (BAME)
Published In
| Year | Start Page | End Page |
|---|---|---|
2006 | 105 | 108 |
Publisher
Kaunas : Technologija
Referenced in Database(s)(DBs)
Extent
p. 105-108
Science / Art Area
Technologijos mokslai / Technological sciences (T)
Field of Science / Art
Mechanikos inžinerija / Mechanical Engineering (T009)
Abstract (en)
The paper presents the evaluation of resistance to abrasive wear by alloying the layers with the electrodes developed in "Anyksciu vans" Ltd. When simulating the wear, diverse pressure between contacting surfaces has been set up. Investigation of the strength of alloyed compositions to abrasive wear has proved that under low abrasive pressure to surface the greatest effect (wear is reduced 5.08 times) is done by high carbon (2.9 %) layers amply alloyed with chromium(22 %), boron (0.71 %) and titanium (0.46 %). Using these materials under high contacting abrasive pressure, no wear difference has been noticed between these carbon layers amply alloyed with chromium, boron and titanium and thermally treated steels microalloyed with boron.
Resource Type (COAR)
TextConference outputConference proceedingsConference paper
Language
Anglų / English (en)
Country
Lietuva / Lithuania (LT)
Owning collection
ISSN (of the container)
1822-2951
eLABa ID
3769682