Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy

The use of non-standard modes of heat treatment increases the density of dislocations in the crystal structure of the α-phase and increases the wear resistance of carbon, low-alloy steels under various friction conditions, which is comparable to the results when heated to a standard temperature (Ac3...

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Main Authors: D. M. Berdiev, A. A. Yusupov
Format: Article
Language:English
Published: Belarusian National Technical University 2021-07-01
Series:Литьë и металлургия
Subjects:
Online Access:https://lim.bntu.by/jour/article/view/3340
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author D. M. Berdiev
A. A. Yusupov
author_facet D. M. Berdiev
A. A. Yusupov
author_sort D. M. Berdiev
collection DOAJ
description The use of non-standard modes of heat treatment increases the density of dislocations in the crystal structure of the α-phase and increases the wear resistance of carbon, low-alloy steels under various friction conditions, which is comparable to the results when heated to a standard temperature (Ac3 + 30–50 °C). The preliminary extreme heating temperature is determined. After requenching at standard temperature and low tempering, the wear resistance of steels under various types of friction increases by up to 40 % compared to standard quenching.
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publisher Belarusian National Technical University
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series Литьë и металлургия
spelling doaj-art-a9e23c207e2a4ec68e2086ea96c8e9202025-08-20T02:55:17ZengBelarusian National Technical UniversityЛитьë и металлургия1683-60652414-04062021-07-010210010410.21122/1683-6065-2021-2-100-1043230Improving the wear resistance of steel products by using non-standard heat treatment modes. FoundryproductionandmetallurgyD. M. Berdiev0A. A. Yusupov1Tashkent State Technical University named after I. KarimovTashkent State Technical University named after I. KarimovThe use of non-standard modes of heat treatment increases the density of dislocations in the crystal structure of the α-phase and increases the wear resistance of carbon, low-alloy steels under various friction conditions, which is comparable to the results when heated to a standard temperature (Ac3 + 30–50 °C). The preliminary extreme heating temperature is determined. After requenching at standard temperature and low tempering, the wear resistance of steels under various types of friction increases by up to 40 % compared to standard quenching.https://lim.bntu.by/jour/article/view/3340wear resistanceheat treatmenthardnesscarbon and low-alloy steelsdislocation density
spellingShingle D. M. Berdiev
A. A. Yusupov
Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy
Литьë и металлургия
wear resistance
heat treatment
hardness
carbon and low-alloy steels
dislocation density
title Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy
title_full Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy
title_fullStr Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy
title_full_unstemmed Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy
title_short Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy
title_sort improving the wear resistance of steel products by using non standard heat treatment modes foundryproductionandmetallurgy
topic wear resistance
heat treatment
hardness
carbon and low-alloy steels
dislocation density
url https://lim.bntu.by/jour/article/view/3340
work_keys_str_mv AT dmberdiev improvingthewearresistanceofsteelproductsbyusingnonstandardheattreatmentmodesfoundryproductionandmetallurgy
AT aayusupov improvingthewearresistanceofsteelproductsbyusingnonstandardheattreatmentmodesfoundryproductionandmetallurgy