Published October 2023 | Version v1
Journal article

Temperature dependence of deformation and fracture in a beta titanium alloy of Ti-22V-4Al

  • 1. Kyushu University, Graduate School of Engineering, Department of Materials, Fukuoka (Japan)
  • 2. Kyushu University, Faculty of Engineering, Department of Materials Science and Engineering, Fukuoka (Japan)
  • 3. Japan Atomic Energy Agency, Nuclear Science and Engineering Center, Tokai, Ibaraki (Japan)

Description

Impact tests and tensile tests were conducted between 77 K and 450 K in order to elucidate the temperature dependence of absorbed-impact energy, yield stress, effective shear stress, activation volume, and activation enthalpy. The impact-absorbed energy decreased with decreasing test temperature, however, this alloy did not undergo low-temperature embrittlement although it has a bcc structure. Tensile tests showed changes in both the work-hardening rate and the temperature dependence of yield stress at approximately 150 K. This suggests a change in the mechanism behind the plastic deformation at the temperature. The temperature dependence of the activation enthalpy for dislocation glide suggests that the process of climbing over the Peierls potential (kink-pair nucleation) is the dominant mechanism for the dislocation glide from 150 K to 200 K, while the interaction between a dislocation and solute atoms dominantly controls the dislocation glide above 200 K. Superelasticity appears in stress-strain curves tested below 120 K, suggesting that the yielding is governed by transformation-induced plasticity below 120 K. The enhanced toughness at low temperatures in these alloys is discussed from the viewpoint of dislocation shielding theory. (author)

Availability note (English)

Available from https://www.jstage.jst.go.jp/browse/jilm/

Additional details

Additional titles

Original title (Japanese)
β型チタン合金Ti-22V-4Alにおける変形・破壊挙動の温度依存性

Publishing Information

Journal Title
Journal of Japan Institute of Light Metals (Online)
Journal Volume
73
Journal Issue
10
Series
雑誌名:軽金属
Journal Page Range
p. 497-503
ISSN
1880-8018

Optional Information

Notes
53 refs., 12 figs., 1 tab.