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April 3, 2026Russian Journal of Non-Ferrous Metals1 citations

The Influence of Production Technology and Subsequent Deformation Treatment on the Microstructure and Properties of the Al–0.5Fe Alloy

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AMA. E. MedvedevASA. F. ShaikhulovaOZO. O. Zhukova

Key Points

  • This research aims to determine how different production technologies and deformation treatments affect the microstructure and properties of Al–0.5Fe alloys.
  • Produced Al–0.5 wt % Fe alloys using electromagnetic mold casting and continuous casting and rolling.
  • Compared cooling rates from different methods to evaluate structure formation.
  • Applied equal-channel angular pressing combined with cold drawing and cold drawing alone to samples.
  • Alloy produced via electromagnetic mold casting exhibited better mechanical strength and electrical conductivity compared to continuous casting.
  • Different particle sizes and distribution led to distinct physical properties between the two alloys.
  • EMC alloy maintained 94–98% of its tensile strength after annealing, while CCR alloy retained only 60–83%.

Abstract

Two alloys with similar chemical composition—Al–0.5 wt % Fe were produced via two different production technology being casting into electromagnetic mold (EMC) and continuous casting and rolling (CCR), respectively. Production methods provided different cooling rates resulting in different structure formation and sets of properties, such as mechanical strength, elongation to failure and electrical conductivity. Samples of the alloys were subjected to the combination of the equal-channel angular pressing by the “Conform” scheme and cold drawing (ECAP-С + CD), as well as cold drawing (CD) only. It was demonstrated that the difference in production process provided distinct structural states, mainly different in size and distribution of the intermetallic particles. Differences in the morphology of the intermetallic particles notably affected the physical and mechanical properties of the alloys, mainly electrical conductivity. Thermal stability of the alloys, measured according to the international standard for thermal-resistant aluminium alloy wire for overhead line conductor, differs as well, depending on the particle morphology—EMC alloy retains 94–98% of its ultimate tensile strength after annealing, while CCR alloy only 60–83%.

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Cite This Study

Medvedev et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ecb5a333a821460d6dehttps://doi.org/10.1134/s1067821225601297
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