High‑energy treatment of steel billet with coating from high‑strength amorphous alloy

The paper presents temperature profiles at the depth of a steel billet with a coating of an iron-based amorphous alloy under the pulsed effect of laser radiation. With the action of a constant power heat source, the heat propagation process tends towards a limiting quasi-stationary state. The choice...

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Main Authors: M. N. Vereshchagin, S. I. Kirilyuk
Format: Article
Language:English
Published: Belarusian National Technical University 2024-09-01
Series:Литьë и металлургия
Subjects:
Online Access:https://lim.bntu.by/jour/article/view/3716
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author M. N. Vereshchagin
S. I. Kirilyuk
author_facet M. N. Vereshchagin
S. I. Kirilyuk
author_sort M. N. Vereshchagin
collection DOAJ
description The paper presents temperature profiles at the depth of a steel billet with a coating of an iron-based amorphous alloy under the pulsed effect of laser radiation. With the action of a constant power heat source, the heat propagation process tends towards a limiting quasi-stationary state. The choice of technological modes of laser radiation exposure with a combination of laser beam scanning speed and radiation power is determined. The depth of the molten layer of the billet material during scanning under the condition of obtaining a high-quality product has been established.
format Article
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institution DOAJ
issn 1683-6065
2414-0406
language English
publishDate 2024-09-01
publisher Belarusian National Technical University
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series Литьë и металлургия
spelling doaj-art-bf4d4a9106db4490bd331b61f52c7eba2025-08-20T02:55:17ZengBelarusian National Technical UniversityЛитьë и металлургия1683-60652414-04062024-09-0103667110.21122/1683-6065-2024-3-66-713587High‑energy treatment of steel billet with coating from high‑strength amorphous alloyM. N. Vereshchagin0S. I. Kirilyuk1P.O. Sukhoj Gomel State Technical UniversityP.O. Sukhoj Gomel State Technical UniversityThe paper presents temperature profiles at the depth of a steel billet with a coating of an iron-based amorphous alloy under the pulsed effect of laser radiation. With the action of a constant power heat source, the heat propagation process tends towards a limiting quasi-stationary state. The choice of technological modes of laser radiation exposure with a combination of laser beam scanning speed and radiation power is determined. The depth of the molten layer of the billet material during scanning under the condition of obtaining a high-quality product has been established.https://lim.bntu.by/jour/article/view/3716laser hardeningtemperaturesteel billetamorphous alloycoatingcooling
spellingShingle M. N. Vereshchagin
S. I. Kirilyuk
High‑energy treatment of steel billet with coating from high‑strength amorphous alloy
Литьë и металлургия
laser hardening
temperature
steel billet
amorphous alloy
coating
cooling
title High‑energy treatment of steel billet with coating from high‑strength amorphous alloy
title_full High‑energy treatment of steel billet with coating from high‑strength amorphous alloy
title_fullStr High‑energy treatment of steel billet with coating from high‑strength amorphous alloy
title_full_unstemmed High‑energy treatment of steel billet with coating from high‑strength amorphous alloy
title_short High‑energy treatment of steel billet with coating from high‑strength amorphous alloy
title_sort high energy treatment of steel billet with coating from high strength amorphous alloy
topic laser hardening
temperature
steel billet
amorphous alloy
coating
cooling
url https://lim.bntu.by/jour/article/view/3716
work_keys_str_mv AT mnvereshchagin highenergytreatmentofsteelbilletwithcoatingfromhighstrengthamorphousalloy
AT sikirilyuk highenergytreatmentofsteelbilletwithcoatingfromhighstrengthamorphousalloy