TY - JOUR
T1 - Microstructural evolution and mechanical properties of Ti–5Al–3Mo–3Cr–1Zr-0.15Si alloy by annealing treatments
AU - Li, Mingbing
AU - Wang, Xinnan
AU - Wang, Kai
AU - Shang, Guoqiang
AU - Zhu, Liwei
AU - Zhu, Zhishou
AU - Zhao, Xinqing
N1 - Publisher Copyright:
© 2024 The Authors
PY - 2024/11/1
Y1 - 2024/11/1
N2 - Titanium alloys, especially α+β type ones, are usually subjected to diverse heat treatments for tailoring their microstructures and mechanical properties. In this study, we investigated the microstructure, microtexture, and mechanical properties of a novel α+β type Ti–5Al–3Mo–3Cr–1Zr-0.15Si alloy with annealing treatments including single annealing, duplex annealing, and β annealing. It was found that the sizes of β grains, α colonies and secondary α, as well as the volume fraction of primary α, are closely dependent on the annealing temperatures. Additionally, the crystallographic orientations of the α and β phases change with specific annealing treatments while consistently adhering to the Burgers orientation relationship. Despite the variations in microtexture intensity with different treatments, the initial microtexture components are retained due to the texture memory effect. The microstructure and mechanical property characterizations revealed that the secondary α phase exert more contribution to the strengthening effect than the primary α phase, while continuous and straight grain boundary α phase undermines the ductility. Duplex annealing, which produces fine β grains and fine secondary α phase, achieves a good balance between the strength and ductility of the alloy.
AB - Titanium alloys, especially α+β type ones, are usually subjected to diverse heat treatments for tailoring their microstructures and mechanical properties. In this study, we investigated the microstructure, microtexture, and mechanical properties of a novel α+β type Ti–5Al–3Mo–3Cr–1Zr-0.15Si alloy with annealing treatments including single annealing, duplex annealing, and β annealing. It was found that the sizes of β grains, α colonies and secondary α, as well as the volume fraction of primary α, are closely dependent on the annealing temperatures. Additionally, the crystallographic orientations of the α and β phases change with specific annealing treatments while consistently adhering to the Burgers orientation relationship. Despite the variations in microtexture intensity with different treatments, the initial microtexture components are retained due to the texture memory effect. The microstructure and mechanical property characterizations revealed that the secondary α phase exert more contribution to the strengthening effect than the primary α phase, while continuous and straight grain boundary α phase undermines the ductility. Duplex annealing, which produces fine β grains and fine secondary α phase, achieves a good balance between the strength and ductility of the alloy.
KW - Annealing
KW - Mechanical properties
KW - Microstructure
KW - Microtexture
KW - Ti-5Al–3Mo–3Cr–1Zr-0.15Si
UR - https://www.scopus.com/pages/publications/85207938242
U2 - 10.1016/j.jmrt.2024.11.005
DO - 10.1016/j.jmrt.2024.11.005
M3 - 文章
AN - SCOPUS:85207938242
SN - 2238-7854
VL - 33
SP - 6074
EP - 6083
JO - Journal of Materials Research and Technology
JF - Journal of Materials Research and Technology
ER -