Application of magnetic‑pulse treatment in electrode arc welding of AD1N alloy

The paper proposes and experimentally tests a new method of welding aluminum alloys with simultaneous magnetic‑pulse treatment (MPT) of the liquid and solidifying metal of the welding pool. The results of investigations on semi‑automatic welding of AD1N aluminum alloy with MPT of the molten pool are...

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Main Authors: K. V. Nikitin, S. S. Zhatkin, D. G. Chernikov, A. K. Skoroumov, D. A. Dunaev, V. A. Novikov
Format: Article
Language:English
Published: Belarusian National Technical University 2023-12-01
Series:Литьë и металлургия
Subjects:
Online Access:https://lim.bntu.by/jour/article/view/3636
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author K. V. Nikitin
S. S. Zhatkin
D. G. Chernikov
A. K. Skoroumov
D. A. Dunaev
V. A. Novikov
author_facet K. V. Nikitin
S. S. Zhatkin
D. G. Chernikov
A. K. Skoroumov
D. A. Dunaev
V. A. Novikov
author_sort K. V. Nikitin
collection DOAJ
description The paper proposes and experimentally tests a new method of welding aluminum alloys with simultaneous magnetic‑pulse treatment (MPT) of the liquid and solidifying metal of the welding pool. The results of investigations on semi‑automatic welding of AD1N aluminum alloy with MPT of the molten pool are presented. The influence of welding and magnetic‑pulse treatment modes on the structure and physico‑mechanical properties of the weld zones is investigated. The research data is presented in the range of discharge energy variation from 250 to 500 J and pulse numbers from 23–24. The results show that the influence of the pulsed magnetic field with discharge energy of 350 and 500 J leads to an increase in material hardness. It is shown that welding with simultaneous MPT in these modes results in structure refinement and the formation of a textured zone with elongated grains at the border with the heat‑affected zone.
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publishDate 2023-12-01
publisher Belarusian National Technical University
record_format Article
series Литьë и металлургия
spelling doaj-art-00c3e24e46c24f838ea9e18eb44b4f732025-08-04T16:50:37ZengBelarusian National Technical UniversityЛитьë и металлургия1683-60652414-04062023-12-010410110810.21122/1683-6065-2023-4-101-1083514Application of magnetic‑pulse treatment in electrode arc welding of AD1N alloyK. V. Nikitin0S. S. Zhatkin1D. G. Chernikov2A. K. Skoroumov3D. A. Dunaev4V. A. Novikov5Samara State Technical UniversitySamara State Technical UniversitySamara National Research University named after academician S. P. KorolevSamara National Research University named after academician S. P. KorolevSamara State Technical UniversitySamara Branch of the Lebedev Physical Institute of the Russian Academy of SciencesThe paper proposes and experimentally tests a new method of welding aluminum alloys with simultaneous magnetic‑pulse treatment (MPT) of the liquid and solidifying metal of the welding pool. The results of investigations on semi‑automatic welding of AD1N aluminum alloy with MPT of the molten pool are presented. The influence of welding and magnetic‑pulse treatment modes on the structure and physico‑mechanical properties of the weld zones is investigated. The research data is presented in the range of discharge energy variation from 250 to 500 J and pulse numbers from 23–24. The results show that the influence of the pulsed magnetic field with discharge energy of 350 and 500 J leads to an increase in material hardness. It is shown that welding with simultaneous MPT in these modes results in structure refinement and the formation of a textured zone with elongated grains at the border with the heat‑affected zone.https://lim.bntu.by/jour/article/view/3636aluminum alloyssemi‑automatic weldingmagnetic‑pulse treatmenthardnessmicrostructurewelding modes
spellingShingle K. V. Nikitin
S. S. Zhatkin
D. G. Chernikov
A. K. Skoroumov
D. A. Dunaev
V. A. Novikov
Application of magnetic‑pulse treatment in electrode arc welding of AD1N alloy
Литьë и металлургия
aluminum alloys
semi‑automatic welding
magnetic‑pulse treatment
hardness
microstructure
welding modes
title Application of magnetic‑pulse treatment in electrode arc welding of AD1N alloy
title_full Application of magnetic‑pulse treatment in electrode arc welding of AD1N alloy
title_fullStr Application of magnetic‑pulse treatment in electrode arc welding of AD1N alloy
title_full_unstemmed Application of magnetic‑pulse treatment in electrode arc welding of AD1N alloy
title_short Application of magnetic‑pulse treatment in electrode arc welding of AD1N alloy
title_sort application of magnetic pulse treatment in electrode arc welding of ad1n alloy
topic aluminum alloys
semi‑automatic welding
magnetic‑pulse treatment
hardness
microstructure
welding modes
url https://lim.bntu.by/jour/article/view/3636
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AT dgchernikov applicationofmagneticpulsetreatmentinelectrodearcweldingofad1nalloy
AT akskoroumov applicationofmagneticpulsetreatmentinelectrodearcweldingofad1nalloy
AT dadunaev applicationofmagneticpulsetreatmentinelectrodearcweldingofad1nalloy
AT vanovikov applicationofmagneticpulsetreatmentinelectrodearcweldingofad1nalloy