An overview of the thermomechanical processing of α/β titanium alloys: current status and future research opportunities

SL Semiatin - Metallurgical and Materials Transactions A, 2020 - Springer
Current understanding of the principles underlying the thermomechanical processing (TMP)
of α/β titanium alloys is reviewed. Attention is focused on the formulation of constitutive …

[HTML][HTML] The effectiveness of combining rolling deformation with Wire–Arc Additive Manufacture on β-grain refinement and texture modification in Ti–6Al–4V

J Donoghue, AA Antonysamy, F Martina… - Materials …, 2016 - Elsevier
Abstract In Additive Manufacture (AM), with the widely used titanium alloy Ti–6Al–4V, the
solidification conditions typically result in undesirable, coarse-columnar, primary β grain …

Digital/virtual microstructures in application to metals engineering–A review

L Madej - Archives of Civil and Mechanical Engineering, 2017 - Elsevier
Recent progress in application of digital/virtual microstructure models in the area of metals
engineering science is presented within the paper. First, various approaches to digital …

Ex-situ and in-situ investigations of the microstructural evolution of AA6082 aluminum alloy during heat treatment

O Lypchanskyi, N Rigas, G Korpała, M Merklein… - Materials Science and …, 2023 - Elsevier
The present study investigated the microstructural evolution of AA6082 aluminum alloy
using ex-situ and in-situ methods. Microstructural characterization was performed for the …

Tailoring equiaxed β-grain structures in Ti-6Al-4V coaxial electron beam wire additive manufacturing

AE Davis, JR Kennedy, D Strong, D Kovalchuk… - Materialia, 2021 - Elsevier
Abstract High-deposition-rate, directed-energy-deposition additive manufacturing (DED-AM)
processes typically produce Ti-6Al-4-V (Ti64) components with coarse columnar β-grain …

[HTML][HTML] On the observation of annealing twins during simulating β-grain refinement in Ti–6Al–4V high deposition rate AM with in-process deformation

J Donoghue, AE Davis, CS Daniel, A Garner, F Martina… - Acta Materialia, 2020 - Elsevier
Abstract Additive Manufacture (AM) of Ti–6Al–4V frequently leads to undesirable, coarse,
columnar β-grain structures with a strong< 100> fibre texture. In Wire-Arc AM (WAAM), it has …

Strain path dependent dynamic recrystallization and its resulted material flow and microstructure evolution of a titanium alloy

X Wang, J Li, W Wu, X Jia, X Zhao, Z Li, H Jin… - Materials Science and …, 2024 - Elsevier
Changing strain path is an effective method to optimize the hot working process and improve
microstructure and mechanical performance of titanium alloys. In this work, dynamic …

Experimental characterization and physical modeling of strain path dependent microstructure evolution: A case study of primary hot working of titanium alloy

L Wang, XG Fan, M Zhan, Q Chen - International Journal of Plasticity, 2022 - Elsevier
Lamellar globularization, a multi-stage and significant microstructure transformation
behavior during primary hot working of titanium alloys, directly affects the microstructure and …

Microstructural analysis of titanium alloys based on high-temperature phase reconstruction

O Lypchanskyi, K Muszka, B Wynne, J Kawalko… - Journal of Materials …, 2024 - Springer
The microstructural evolution of titanium alloys under high-temperature conditions plays a
key role in determining their mechanical properties and hot working behavior. This research …

Revisiting the lamellar globularization behavior of a two-phase titanium alloy from the perspective of deformation modes

L Wang, XG Fan, M Zhan, XQ Jiang, YF Liang… - Journal of Materials …, 2021 - Elsevier
The correlation between lamellar globularization and deformation modes during the primary
hot processing of titanium alloy was evaluated by means of uniaxial compression, tension …