TY - JOUR
T1 - Microscopic phase-field simulation on the effect of first-stage ageing temperature for Ni75Al10Cr15 alloy
AU - Zhang, Jixiang
AU - Chen, Zheng
AU - Wang, Yongxin
AU - Liang, Minjie
AU - Lai, Qingbo
PY - 2008/7
Y1 - 2008/7
N2 - Based on the microscopic phase-field model, the first-stage ageing temperature effect of double-stage ageing is simulated for Ni75Al10Cr15 alloy. When the first-stage ageing temperature is lower, a non-classical nucleation and growth mechanism occurs for L12 phase, while the precipitated mechanism of DO22 phase is spinodal decomposition, the homogeneous and disperse precipitated phase is liable to acquire, the dimension of L12 phase is close to the DO22 phase. When the first-stage ageing temperature is higher, the precipitated mechanism of L12 phase is spinodal decomposition, while the precipitated mechanism of DO22 phase is non-classical nucleation and growth, and the dimension of L12 phase is obviously larger than that of DO22 phase. The incubation period of precipitation becomes longer, and the grain densities of L12 and DO22 decrease with the increase of first-stage ageing temperature.
AB - Based on the microscopic phase-field model, the first-stage ageing temperature effect of double-stage ageing is simulated for Ni75Al10Cr15 alloy. When the first-stage ageing temperature is lower, a non-classical nucleation and growth mechanism occurs for L12 phase, while the precipitated mechanism of DO22 phase is spinodal decomposition, the homogeneous and disperse precipitated phase is liable to acquire, the dimension of L12 phase is close to the DO22 phase. When the first-stage ageing temperature is higher, the precipitated mechanism of L12 phase is spinodal decomposition, while the precipitated mechanism of DO22 phase is non-classical nucleation and growth, and the dimension of L12 phase is obviously larger than that of DO22 phase. The incubation period of precipitation becomes longer, and the grain densities of L12 and DO22 decrease with the increase of first-stage ageing temperature.
KW - Double-stage ageing
KW - Microscopic phase field
KW - Ni-Cr-Al alloy
KW - Ordered phase
UR - http://www.scopus.com/inward/record.url?scp=49549089794&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:49549089794
SN - 1002-185X
VL - 37
SP - 1174
EP - 1178
JO - Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering
JF - Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering
IS - 7
ER -