TY - JOUR
T1 - Dissolution behaviour of the γ' precipitates in two kinds of Ni-based superalloys
AU - Wang, Tianyou
AU - Wang, Xiaomeng
AU - Zhao, Zihua
AU - Zhang, Zheng
N1 - Publisher Copyright:
© 2016 Informa UK Limited, trading as Taylor & Francis Group.
PY - 2016
Y1 - 2016
N2 - The effects of high heating temperature and short dwell time on the evolution of γ' precipitates were investigated in two kinds of Ni-based superalloys. The microstructural evolutions of the samples were characterised by qualitative and quantitative metallography during various heating cycles, and the dissolution kinetics were then evaluated. The results illustrated that the heating temperature plays a more predominant role in the dissolution of γ' precipitates than the dwell time. Meanwhile, the γ' morphology in the dissolution process was strongly influenced by the elastic strain energy associated with the lattice mismatch between γ and γ' phases. For IN 100 alloy, the γ' evolution was dominated by the elastic interaction energy between adjacent precipitates, but for DS Rene 125 alloy, the γ' precipitates kept a regular arrangement along the [001] softest directions in the dissolution process. On increasing the dwell time for the two kinds of superalloys, the dissolution rate of γ' gradually decreased, and the dissolution activation energy gradually increased. However, the dissolution activation energy for IN 100 alloy was different from that of DS Rene 125 alloy under the same heating conditions.
AB - The effects of high heating temperature and short dwell time on the evolution of γ' precipitates were investigated in two kinds of Ni-based superalloys. The microstructural evolutions of the samples were characterised by qualitative and quantitative metallography during various heating cycles, and the dissolution kinetics were then evaluated. The results illustrated that the heating temperature plays a more predominant role in the dissolution of γ' precipitates than the dwell time. Meanwhile, the γ' morphology in the dissolution process was strongly influenced by the elastic strain energy associated with the lattice mismatch between γ and γ' phases. For IN 100 alloy, the γ' evolution was dominated by the elastic interaction energy between adjacent precipitates, but for DS Rene 125 alloy, the γ' precipitates kept a regular arrangement along the [001] softest directions in the dissolution process. On increasing the dwell time for the two kinds of superalloys, the dissolution rate of γ' gradually decreased, and the dissolution activation energy gradually increased. However, the dissolution activation energy for IN 100 alloy was different from that of DS Rene 125 alloy under the same heating conditions.
KW - Dissolution
KW - Dissolution activation energy
KW - Microstructure
KW - Nickel based superalloys
UR - https://www.scopus.com/pages/publications/84964627229
U2 - 10.1179/1878641315Y.0000000006
DO - 10.1179/1878641315Y.0000000006
M3 - 文章
AN - SCOPUS:84964627229
SN - 0960-3409
VL - 33
SP - 51
EP - 57
JO - Materials at High Temperatures
JF - Materials at High Temperatures
IS - 1
ER -