TY - JOUR
T1 - Effect of heat treatment on microstructure eolution of TC21 alloy
AU - Shao, Hui
AU - Zhao, Yongqing
AU - Ge, Peng
AU - Zeng, Weidong
AU - Wang, Kaixuan
AU - Yang, Yi
PY - 2012/5
Y1 - 2012/5
N2 - The microstructure evolution was analysised by heat treatment process at different solution temperatures and different cooling rates above or below β transform temperature. The microstructure parameters such as grain size, total α phase area, thicknesses of lamellar α phase, primary α phase area and secondary α phase area were measured by software Image Proplus. The results show that for the heat treatment above β transform temperature with furnace cooling, the grain size increases with the increase of temperature, its growth is bigger than that under BC cooling condition at the same solution temperature. During the heat treatment below β transform temperature, for BC cooling condition, the total α phase area increases with increasing of temperature (800-850°C), while it decreases as result of the secondary α phase disappearance (after 900-930°C solution treatment). Moreover, for FC cooling condition (900-930°C), the total α phase area increases as result of the largely precipitation of feathery lamellar α phase. The evolution mechanism of the grain and the volume fraction of α phase were analysised by the dynamics theory. Copyright
AB - The microstructure evolution was analysised by heat treatment process at different solution temperatures and different cooling rates above or below β transform temperature. The microstructure parameters such as grain size, total α phase area, thicknesses of lamellar α phase, primary α phase area and secondary α phase area were measured by software Image Proplus. The results show that for the heat treatment above β transform temperature with furnace cooling, the grain size increases with the increase of temperature, its growth is bigger than that under BC cooling condition at the same solution temperature. During the heat treatment below β transform temperature, for BC cooling condition, the total α phase area increases with increasing of temperature (800-850°C), while it decreases as result of the secondary α phase disappearance (after 900-930°C solution treatment). Moreover, for FC cooling condition (900-930°C), the total α phase area increases as result of the largely precipitation of feathery lamellar α phase. The evolution mechanism of the grain and the volume fraction of α phase were analysised by the dynamics theory. Copyright
KW - Equiaxial microstructure
KW - Microstructure parameter
KW - Quantitative characteristics
KW - Solution treatment
UR - http://www.scopus.com/inward/record.url?scp=84863220204&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:84863220204
SN - 1002-185X
VL - 41
SP - 932
EP - 935
JO - Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering
JF - Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering
IS - 5
ER -