High-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast cooling

The goal of this work is to estimate the abrasive wear resistance of heat affected zone (HAZ) after welding high-carbon low-alloy steel 120Mn3Si2 with fast cooling. The following benchmark data were used: microstructures of HAZ of 120Mn3Si2 steel after welding with cooling in water; abrasive wear re...

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Main Authors: M.N.Brykov, V.G.Efremenko, M.Yu.Osipov, A.E.Kapustyan, T.A.Akrytova, Yu.A.Kalinin
Format: Article
Language:English
Published: Khmelhitsky National University, Lublin University of Technology 2021-03-01
Series:Проблеми трибології
Subjects:
Online Access:https://doi.org/10.31891/2079-1372-2021-99-1-59-65
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spelling doaj-bf247124a4a4448fa4e07638ca9b35742021-05-10T08:23:28ZengKhmelhitsky National University, Lublin University of TechnologyПроблеми трибології2079-13722021-03-01261/99 (2021)596510.31891/2079-1372-2021-99-1-59-65High-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast coolingM.N.Brykov0V.G.Efremenko1M.Yu.Osipov2A.E.Kapustyan3T.A.Akrytova4Yu.A.Kalinin5"Zaporizhzhya Polytechnic" National University, UkrainePriazovskyi State Technical University, Ukraine"Zaporizhzhya Polytechnic" National University, Ukraine"Zaporizhzhya Polytechnic" National University, Ukraine"Zaporizhzhya Polytechnic" National University, UkrainePrJSC “Zaporozhtransformator”, UkraineThe goal of this work is to estimate the abrasive wear resistance of heat affected zone (HAZ) after welding high-carbon low-alloy steel 120Mn3Si2 with fast cooling. The following benchmark data were used: microstructures of HAZ of 120Mn3Si2 steel after welding with cooling in water; abrasive wear resistance of different microstructure constituents of 120Mn3Si2 steel in two-body abrasive wear conditions. It is shown that high abrasive wear resistance of material in HAZ is provided in the vicinity of fusion line. The reason is unstable retained austenite which appears in HAZ as a result of quenching at fast cooling right after welding. The wear resistance of material in HAZ is altered by microstructural changes from austenite to austenite+martensite and finally martensite. The martensitic zone is about 0.5 mm wide and it is followed by zone of tempering of initial structure of steel. Zone of tempering is 1.5-2.0 mm wide and is the only zone of low abrasive wear resistance in HAZ of 120Mn3Si2 steel welded with fast cooling. Welding of 120Mn3Si2 steel with fast cooling in water results in welding joints which have as high wear resistant as the base material or even higher. This enables manufacturing flat welded elements with high wear-resistance and large surface areahttps://doi.org/10.31891/2079-1372-2021-99-1-59-65high-carbon steel weldingweldingfast coolingausteniteabrasive wear resistance
collection DOAJ
language English
format Article
sources DOAJ
author M.N.Brykov
V.G.Efremenko
M.Yu.Osipov
A.E.Kapustyan
T.A.Akrytova
Yu.A.Kalinin
spellingShingle M.N.Brykov
V.G.Efremenko
M.Yu.Osipov
A.E.Kapustyan
T.A.Akrytova
Yu.A.Kalinin
High-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast cooling
Проблеми трибології
high-carbon steel welding
welding
fast cooling
austenite
abrasive wear resistance
author_facet M.N.Brykov
V.G.Efremenko
M.Yu.Osipov
A.E.Kapustyan
T.A.Akrytova
Yu.A.Kalinin
author_sort M.N.Brykov
title High-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast cooling
title_short High-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast cooling
title_full High-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast cooling
title_fullStr High-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast cooling
title_full_unstemmed High-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast cooling
title_sort high-carbon steel: microstructure and abrasive wear resistance of heat affected zone after welding with fast cooling
publisher Khmelhitsky National University, Lublin University of Technology
series Проблеми трибології
issn 2079-1372
publishDate 2021-03-01
description The goal of this work is to estimate the abrasive wear resistance of heat affected zone (HAZ) after welding high-carbon low-alloy steel 120Mn3Si2 with fast cooling. The following benchmark data were used: microstructures of HAZ of 120Mn3Si2 steel after welding with cooling in water; abrasive wear resistance of different microstructure constituents of 120Mn3Si2 steel in two-body abrasive wear conditions. It is shown that high abrasive wear resistance of material in HAZ is provided in the vicinity of fusion line. The reason is unstable retained austenite which appears in HAZ as a result of quenching at fast cooling right after welding. The wear resistance of material in HAZ is altered by microstructural changes from austenite to austenite+martensite and finally martensite. The martensitic zone is about 0.5 mm wide and it is followed by zone of tempering of initial structure of steel. Zone of tempering is 1.5-2.0 mm wide and is the only zone of low abrasive wear resistance in HAZ of 120Mn3Si2 steel welded with fast cooling. Welding of 120Mn3Si2 steel with fast cooling in water results in welding joints which have as high wear resistant as the base material or even higher. This enables manufacturing flat welded elements with high wear-resistance and large surface area
topic high-carbon steel welding
welding
fast cooling
austenite
abrasive wear resistance
url https://doi.org/10.31891/2079-1372-2021-99-1-59-65
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AT myuosipov highcarbonsteelmicrostructureandabrasivewearresistanceofheataffectedzoneafterweldingwithfastcooling
AT aekapustyan highcarbonsteelmicrostructureandabrasivewearresistanceofheataffectedzoneafterweldingwithfastcooling
AT taakrytova highcarbonsteelmicrostructureandabrasivewearresistanceofheataffectedzoneafterweldingwithfastcooling
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