Laser Surface Alloying of Some Steels from SiC Predeposited Powders

For the purpose of studying the possibilities of increasing the wear resistance, specimens of three steels with 0.2%C, 0.46%C and 1%C were surface alloyed with reinforcement from overlapping pastes with green SiC hard particles with the granulation 800 and 320. The melting of surface layer was perf...

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Main Authors: S. M. LEVCOVICI, D. T. LEVCOVICI
Format: Article
Language:English
Published: Galati University Press 2008-11-01
Series:The Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science
Subjects:
SiC
Online Access:https://www.gup.ugal.ro/ugaljournals/index.php/mms/article/view/3109
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spelling doaj-8300fe8b000d49db90ebbe47673abe2b2021-07-02T18:51:20ZengGalati University PressThe Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science2668-47482668-47562008-11-013123109Laser Surface Alloying of Some Steels from SiC Predeposited PowdersS. M. LEVCOVICI0D. T. LEVCOVICI1"Dunarea de Jos" University of Galati, Romania"UZINSIDER ENGINEERING" S.A. Galati, Romania For the purpose of studying the possibilities of increasing the wear resistance, specimens of three steels with 0.2%C, 0.46%C and 1%C were surface alloyed with reinforcement from overlapping pastes with green SiC hard particles with the granulation 800 and 320. The melting of surface layer was performed by CO2 continous wave laser on a numerical x-y table. On these specimens the micro structural characteristics, geometry of molten zone, micro hardness variation in the alloyed layer depth and the HV5 hardness on a laser processed surface were determined, which allowed defining the added material with the best hardening effect. The conditions to obtain compact surface layers with 2-3 time higher hardness than the base material were determined. https://www.gup.ugal.ro/ugaljournals/index.php/mms/article/view/3109laser alloyingSiCmicrostructuremicro hardness
collection DOAJ
language English
format Article
sources DOAJ
author S. M. LEVCOVICI
D. T. LEVCOVICI
spellingShingle S. M. LEVCOVICI
D. T. LEVCOVICI
Laser Surface Alloying of Some Steels from SiC Predeposited Powders
The Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science
laser alloying
SiC
microstructure
micro hardness
author_facet S. M. LEVCOVICI
D. T. LEVCOVICI
author_sort S. M. LEVCOVICI
title Laser Surface Alloying of Some Steels from SiC Predeposited Powders
title_short Laser Surface Alloying of Some Steels from SiC Predeposited Powders
title_full Laser Surface Alloying of Some Steels from SiC Predeposited Powders
title_fullStr Laser Surface Alloying of Some Steels from SiC Predeposited Powders
title_full_unstemmed Laser Surface Alloying of Some Steels from SiC Predeposited Powders
title_sort laser surface alloying of some steels from sic predeposited powders
publisher Galati University Press
series The Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science
issn 2668-4748
2668-4756
publishDate 2008-11-01
description For the purpose of studying the possibilities of increasing the wear resistance, specimens of three steels with 0.2%C, 0.46%C and 1%C were surface alloyed with reinforcement from overlapping pastes with green SiC hard particles with the granulation 800 and 320. The melting of surface layer was performed by CO2 continous wave laser on a numerical x-y table. On these specimens the micro structural characteristics, geometry of molten zone, micro hardness variation in the alloyed layer depth and the HV5 hardness on a laser processed surface were determined, which allowed defining the added material with the best hardening effect. The conditions to obtain compact surface layers with 2-3 time higher hardness than the base material were determined.
topic laser alloying
SiC
microstructure
micro hardness
url https://www.gup.ugal.ro/ugaljournals/index.php/mms/article/view/3109
work_keys_str_mv AT smlevcovici lasersurfacealloyingofsomesteelsfromsicpredepositedpowders
AT dtlevcovici lasersurfacealloyingofsomesteelsfromsicpredepositedpowders
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