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September 19, 2025Advanced Engineering Materials4 citationsOpen Access

Improved Strength and Corrosion Resistance of Ti–50Zr Alloy Through Heat Treatment

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YLYuhua LiQZQian ZhangRZRong Zhao

Key Points

  • Corrosion resistance improved with heat-treated Ti–50Zr alloy, enhancing passive film integrity.
  • Tensile and yield strength increased significantly in heat-treated specimens, demonstrating superior mechanical properties.
  • Heat treatment refines microstructure, fostering a stronger acicular α′ phase for improved structural stability.
  • Grain refinement and increased dislocation density are key factors enhancing the alloy's strength and durability.

Abstract

This work systematically analyzes the effects of heat treatment on the mechanical properties and corrosion behavior of Ti‐50Zr alloy produced via vacuum arc melting. Microstructural characterization demonstrates that the microstructure of Ti–50Zr transforms from coarse lamellar α phase in as‐cast condition to fine and uniformly distributes acicular α′ phase in heat‐treatment state. The tensile strength, yield strength, and microhardness are significantly improved. This strengthening effect can be attributed to grain refinement and increase in dislocation density induced by heat treatment. Furthermore, the heat‐treated Ti–50Zr exhibits lower corrosion current density and higher passive film resistance, suggesting a notable improvement in corrosion resistance. The primary mechanism of enhanced corrosion resistance is that heat treatment facilitates the formation of a thick and uniform passive film, enhanced the homogeneous distribution of Ti and Zr elements, which enhanced the structural integrity and compactness of the passive film. This work provides a useful reference for the development of high‐strength and corrosion‐resistant titanium alloys.

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Cite This Study

Li et al. (2025) studied this question.

synapsesocial.com/papers/68d464ea31b076d99fa63eaahttps://doi.org/10.1002/adem.202501828
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