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March 14, 2026Metals0 citationsOpen Access

Microstructure and Mechanical Properties of PM Ti-4Al-2Fe-3Cu Alloy Modified by Vanadium Addition

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MNMojtaba NajafizadehMGMehran Ghasempour-MouzirajiRSR. Bruno de Sousa

Key Points

  • This research investigates the influence of vanadium on the microstructure and properties of a specific powder metallurgy titanium alloy.
  • Fabrication of alloys with and without 6 wt.% V through hot extrusion of blended elemental powders, followed by vacuum heat treatment.
  • Microstructural analysis to assess both coarse lamellar and refined basketweave structures.
  • Mechanical testing to evaluate yield strength, ultimate tensile strength, and tensile ductility.
  • Vanadium addition increases the β-phase fraction from 28.1% to 46.2%.
  • Yield strength improved from 1122 MPa to 1291 MPa; ultimate tensile strength enhanced from 1214 MPa to 1349 MPa.
  • Tensile ductility remains comparably low at ~3.5%.

Abstract

This study examines the effect of vanadium addition on the microstructure and mechanical properties of low-cost powder metallurgy Ti-4Al-2Fe-3Cu alloys. Alloys with and without 6 wt.% V were fabricated by hot extrusion of blended elemental powders followed by vacuum heat treatment. Microstructural analysis revealed that the base alloy exhibits a coarse lamellar α/β structure, while vanadium addition promotes a refined basketweave morphology with a significantly higher β-phase fraction, increasing from 28.1% to 46.2%. Energy-dispersive spectroscopy confirmed preferential partitioning of Fe, Cu, and V into the β phase. Mechanical testing showed that the addition of 6 wt.% V markedly enhances strength, increasing yield strength and ultimate tensile strength from 1122 MPa and 1214 MPa to 1291 MPa and 1349 MPa, respectively, while maintaining comparable tensile ductility (~3.5%). The strength improvement is attributed to α-plate refinement, increased β-phase fraction, and solid-solution strengthening of the β phase. These results demonstrate that vanadium addition is an effective approach for improving the strength of low-cost PM titanium alloys without compromising ductility.

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Cite This Study

Najafizadeh et al. (2026) studied this question.

synapsesocial.com/papers/69b4b9fb18185d8a39802629https://doi.org/10.3390/met16030310
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