Loading [MathJax]/extensions/tex2jax.js

Analysis of the Almgsi-alloy structure formed under the influence of low-frequency pulsed Lorentz force

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autorschaft

Organisationseinheiten

Externe Organisationen

  • Kazan State Power Engineering University
  • ALD Vacuum Technologies

Details

OriginalspracheEnglisch
Seiten (von - bis)245-254
Seitenumfang10
FachzeitschriftMagnetohydrodynamics
Jahrgang53
Ausgabenummer2
PublikationsstatusVeröffentlicht - 2017

Abstract

The paper studies the influence of Al-alloy melt motion forced by a pulsed electromagnetic force on the solidification process. In order to estimate the influence, the final structure of solidified samples was considered. The investigation was performed experimentally in a cylindrical vessel. To generate electromagnetic force pulses with frequencies ranging 0.1 to 10 Hz, the generation of alternating magnetic field was interrupted. For comparison, the influence of two other regimes was considered: the crystallization process under natural convection and under a steadily applied alternating magnetic field. Variation of the average grain size along the ingots radius and axis was compared for all regimes. Under buoyancy, the effect of more homogeneous distribution of grains as well as their refinement was observed for the regimes of permanent stirring and EM force pulses with frequencies below 1Hz. The effect decreases with increase pulsed frequency and for 5 and 10Hz it only slightly differs from the influence of the uninterrupted field. With 0.2Hz, the average grain diameter reduces by 36% with regard to the structure occurred under buoyancy. The factors causing this effect are discussed in the article.

ASJC Scopus Sachgebiete

Zitieren

Analysis of the Almgsi-alloy structure formed under the influence of low-frequency pulsed Lorentz force. / Musaeva, D.; Baake, E.; Ilin, V. et al.
in: Magnetohydrodynamics, Jahrgang 53, Nr. 2, 2017, S. 245-254.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Download
@article{1a0b9cc471c14a4aa0ac6bb17e1f611a,
title = "Analysis of the Almgsi-alloy structure formed under the influence of low-frequency pulsed Lorentz force",
abstract = "The paper studies the influence of Al-alloy melt motion forced by a pulsed electromagnetic force on the solidification process. In order to estimate the influence, the final structure of solidified samples was considered. The investigation was performed experimentally in a cylindrical vessel. To generate electromagnetic force pulses with frequencies ranging 0.1 to 10 Hz, the generation of alternating magnetic field was interrupted. For comparison, the influence of two other regimes was considered: the crystallization process under natural convection and under a steadily applied alternating magnetic field. Variation of the average grain size along the ingots radius and axis was compared for all regimes. Under buoyancy, the effect of more homogeneous distribution of grains as well as their refinement was observed for the regimes of permanent stirring and EM force pulses with frequencies below 1Hz. The effect decreases with increase pulsed frequency and for 5 and 10Hz it only slightly differs from the influence of the uninterrupted field. With 0.2Hz, the average grain diameter reduces by 36% with regard to the structure occurred under buoyancy. The factors causing this effect are discussed in the article.",
author = "D. Musaeva and E. Baake and V. Ilin and G. Jarczyk",
year = "2017",
doi = "10.22364/mhd.53.2.3",
language = "English",
volume = "53",
pages = "245--254",
journal = "Magnetohydrodynamics",
issn = "0024-998X",
publisher = "Institute of Physics, University of Latvia",
number = "2",

}

Download

TY - JOUR

T1 - Analysis of the Almgsi-alloy structure formed under the influence of low-frequency pulsed Lorentz force

AU - Musaeva, D.

AU - Baake, E.

AU - Ilin, V.

AU - Jarczyk, G.

PY - 2017

Y1 - 2017

N2 - The paper studies the influence of Al-alloy melt motion forced by a pulsed electromagnetic force on the solidification process. In order to estimate the influence, the final structure of solidified samples was considered. The investigation was performed experimentally in a cylindrical vessel. To generate electromagnetic force pulses with frequencies ranging 0.1 to 10 Hz, the generation of alternating magnetic field was interrupted. For comparison, the influence of two other regimes was considered: the crystallization process under natural convection and under a steadily applied alternating magnetic field. Variation of the average grain size along the ingots radius and axis was compared for all regimes. Under buoyancy, the effect of more homogeneous distribution of grains as well as their refinement was observed for the regimes of permanent stirring and EM force pulses with frequencies below 1Hz. The effect decreases with increase pulsed frequency and for 5 and 10Hz it only slightly differs from the influence of the uninterrupted field. With 0.2Hz, the average grain diameter reduces by 36% with regard to the structure occurred under buoyancy. The factors causing this effect are discussed in the article.

AB - The paper studies the influence of Al-alloy melt motion forced by a pulsed electromagnetic force on the solidification process. In order to estimate the influence, the final structure of solidified samples was considered. The investigation was performed experimentally in a cylindrical vessel. To generate electromagnetic force pulses with frequencies ranging 0.1 to 10 Hz, the generation of alternating magnetic field was interrupted. For comparison, the influence of two other regimes was considered: the crystallization process under natural convection and under a steadily applied alternating magnetic field. Variation of the average grain size along the ingots radius and axis was compared for all regimes. Under buoyancy, the effect of more homogeneous distribution of grains as well as their refinement was observed for the regimes of permanent stirring and EM force pulses with frequencies below 1Hz. The effect decreases with increase pulsed frequency and for 5 and 10Hz it only slightly differs from the influence of the uninterrupted field. With 0.2Hz, the average grain diameter reduces by 36% with regard to the structure occurred under buoyancy. The factors causing this effect are discussed in the article.

UR - http://www.scopus.com/inward/record.url?scp=85030637153&partnerID=8YFLogxK

U2 - 10.22364/mhd.53.2.3

DO - 10.22364/mhd.53.2.3

M3 - Article

AN - SCOPUS:85030637153

VL - 53

SP - 245

EP - 254

JO - Magnetohydrodynamics

JF - Magnetohydrodynamics

SN - 0024-998X

IS - 2

ER -

Von denselben Autoren