TY - JOUR
T1 - Hot deformation behavior and microstructure evolution of TA15 titanium alloy with nonuniform microstructure
AU - Gao, Pengfei
AU - Zhan, Mei
AU - Fan, Xiaoguang
AU - Lei, Zhenni
AU - Cai, Yang
N1 - Publisher Copyright:
© 2017 Elsevier B.V.
PY - 2017/3/24
Y1 - 2017/3/24
N2 - The flow behavior and microstructure evolution of a near α titanium alloy with nonuniform microstructure during hot deformation were studied by isothermal compression test and electron backscatter diffraction technique. It is found that the nonuniform microstructure prior to deformation consists of equiaxed α, lamellar α in the colony form and β phase, and the α colony keeps the Burgers orientation relationship with β phase. The flow stress of nonuniform microstructure exhibits significant flow softening after reaching the peak stress at a low strain, which is similar to the lamellar microstructure. Nevertheless, the existence of equiaxed α in nonuniform microstructure makes its flow stress and softening rate be lower than the lamellar microstructure. During deformation, the lamellar α undertakes most of the deformation and turns to be rotated, bended and globularized. Moreover, these phenomena exhibit significant heterogeneity due to the orientation dependence of the deformation of lamellar α. The continuous dynamic recrystallization and bending of lamellar α lead to the “fragmentation” during globularization of lamellar α. The bending of lamellar α is speculated as a form of plastic buckling, because the bending of lamellar α almost proceed in the manner of “rigid rotation” and presents opposite bending directions for the adjacent colonies.
AB - The flow behavior and microstructure evolution of a near α titanium alloy with nonuniform microstructure during hot deformation were studied by isothermal compression test and electron backscatter diffraction technique. It is found that the nonuniform microstructure prior to deformation consists of equiaxed α, lamellar α in the colony form and β phase, and the α colony keeps the Burgers orientation relationship with β phase. The flow stress of nonuniform microstructure exhibits significant flow softening after reaching the peak stress at a low strain, which is similar to the lamellar microstructure. Nevertheless, the existence of equiaxed α in nonuniform microstructure makes its flow stress and softening rate be lower than the lamellar microstructure. During deformation, the lamellar α undertakes most of the deformation and turns to be rotated, bended and globularized. Moreover, these phenomena exhibit significant heterogeneity due to the orientation dependence of the deformation of lamellar α. The continuous dynamic recrystallization and bending of lamellar α lead to the “fragmentation” during globularization of lamellar α. The bending of lamellar α is speculated as a form of plastic buckling, because the bending of lamellar α almost proceed in the manner of “rigid rotation” and presents opposite bending directions for the adjacent colonies.
KW - Hot deformation behavior
KW - Microstructure evolution
KW - Nonuniform microstructure
KW - TA15 titanium alloy
UR - http://www.scopus.com/inward/record.url?scp=85013344104&partnerID=8YFLogxK
U2 - 10.1016/j.msea.2017.02.054
DO - 10.1016/j.msea.2017.02.054
M3 - 文章
AN - SCOPUS:85013344104
SN - 0921-5093
VL - 689
SP - 243
EP - 251
JO - Materials Science and Engineering: A
JF - Materials Science and Engineering: A
ER -