TY - JOUR
T1 - Quantitative characterization of β-solidifying γ-TiAl alloy with duplex structure
AU - XU, Run run
AU - LI, Miao quan
N1 - Publisher Copyright:
© 2021 The Nonferrous Metals Society of China
PY - 2021/7
Y1 - 2021/7
N2 - For precise plastic deformation, microstructure control is essential especially for β-solidifying γ-TiAl alloy with duplex structure. Based on stereology, the microstructure of isothermally compressed γ-TiAl alloy was divided into β0 grains, remnant α2/γ lamellar colonies, α2 and γ grains. The results show that the volume fraction of β0 grains slightly increases in the isothermally compressed γ-TiAl alloy with the increase of height reduction. Meanwhile, the volume fractions of remnant α2/γ lamellar colonies and α2 grains decrease. However, the volume fraction of γ grains increases from 64.39% to 78.47%. According to the quantitative results, the α→γ phase transformation was investigated in-depth, and it is found that isothermal compression accelerates the α→γ phase transformation. The first α→γ phase transformation is similar to ledge-controlled transformation, through which remnant α2/γ lamellar colonies finally convert into γ grains in isothermal compression. The second is achieved by α/γ phase interface immigration.
AB - For precise plastic deformation, microstructure control is essential especially for β-solidifying γ-TiAl alloy with duplex structure. Based on stereology, the microstructure of isothermally compressed γ-TiAl alloy was divided into β0 grains, remnant α2/γ lamellar colonies, α2 and γ grains. The results show that the volume fraction of β0 grains slightly increases in the isothermally compressed γ-TiAl alloy with the increase of height reduction. Meanwhile, the volume fractions of remnant α2/γ lamellar colonies and α2 grains decrease. However, the volume fraction of γ grains increases from 64.39% to 78.47%. According to the quantitative results, the α→γ phase transformation was investigated in-depth, and it is found that isothermal compression accelerates the α→γ phase transformation. The first α→γ phase transformation is similar to ledge-controlled transformation, through which remnant α2/γ lamellar colonies finally convert into γ grains in isothermal compression. The second is achieved by α/γ phase interface immigration.
KW - digital image analysis
KW - microstructure
KW - phase transformation
KW - stereology
KW - TiAl alloy
UR - http://www.scopus.com/inward/record.url?scp=85111929638&partnerID=8YFLogxK
U2 - 10.1016/S1003-6326(21)65632-7
DO - 10.1016/S1003-6326(21)65632-7
M3 - 文章
AN - SCOPUS:85111929638
SN - 1003-6326
VL - 31
SP - 1993
EP - 2004
JO - Transactions of Nonferrous Metals Society of China (English Edition)
JF - Transactions of Nonferrous Metals Society of China (English Edition)
IS - 7
ER -