Effects of recovery and phase transformation on the recrystallization kinetics of Ti-6Al-4V during β-processing

Franz Miller Branco Ferraz*, Ricardo Henrique Buzolin, Fernando Gustavo Warchomicka, Talina Terrazas Monje, Stefan Ebenbauer, Thomas Leitner, Alfred Krumphals, M. C. Poletti

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

This work unifies the description of microstructure evolution during dynamic and static recrystallization of Ti-6Al-4V in a single model. The developed model incorporates the role of dislocation interactions on the phenomenological concepts of dynamic and static recovery, continuous dynamic and static recrystallization, nucleation rate, and grain growth. The β-grain elongation during hot compression and the role of the deformed prior β-grain size on the number of potential nucleation sites are considered to visualize the influence of the initial grain size before deformation on the kinetics of static recrystallization. The model is calibrated and validated with experimental data from Ti-6Al-4V samples thermomechanically treated in the β-domain. Finally, the model is implemented as subroutines into the commercial FEM-based software DEFORM™ 2D. The proposed model accurately predicts I) the flow behavior and grain refinement during supertransus deformation, II) the influence of initial grain size, temperature, and deformation rate on the static recrystallization kinetics, and III) the grain growth kinetics. Simulations of hot forming followed by isothermal heat treatment and continuous cooling show that the Zener drag effect due to the formation of the α-phase has a greater influence on the kinetics of β-recrystallization than the cooling rate itself.
Original languageEnglish
Article number147628
JournalMaterials Science and Engineering A
Volume922
DOIs
Publication statusPublished - Feb 2025

Keywords

  • Annealing
  • Continuous dynamic recrystallization
  • Grain growth
  • Hot deformation
  • Microstructure
  • Modelling
  • Static recrystallization
  • Ti-6Al-4V

ASJC Scopus subject areas

  • General Materials Science
  • Condensed Matter Physics
  • Mechanics of Materials
  • Mechanical Engineering

Fields of Expertise

  • Advanced Materials Science
  • CD-Laboratory for Design of high-performance alloys by thermomechanical processing

    Poletti, M. C. (Co-Investigator (CoI)), Buzolin, R. H. (Co-Investigator (CoI)), Wang, R. (Co-Investigator (CoI)), Godavarthy Anantha Venkata, R. K. P. (Co-Investigator (CoI)), Miller Branco Ferraz, F. (Co-Investigator (CoI)), Fortmüller, S. (Co-Investigator (CoI)) & Baumann, G. (Co-Investigator (CoI))

    1/05/1730/04/25

    Project: Research project

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