TY - JOUR
T1 - Experimental investigation on phase transformation of Cu-Ni-Si alloy melts during cooling
AU - Jia, L.
AU - Xie, H.
AU - Lu, Z. L.
AU - Wang, X.
AU - Lin, X.
PY - 2013/8
Y1 - 2013/8
N2 - Rapid water quenching experiments were first carried out according to differential scanning calorimetry results, and then the microstructure and phase composition of such water quenching Cu-8·33Ni-1·67Si (wt-%) samples were investigated. Subsequently, calculation on the competition nucleation of the primary phase was also carried out. Based on the experimental and calculational results, the phase transformation behaviour of Cu-8·33Ni-1·67Si melts during the cooling process was discussed, and the results can be summarised as follows. First, the α-Cu phase formed as a primary phase due to the shorter incubation time and higher time dependent nucleation rate. Subsequently, a eutectic reaction occurred in the interdendritic residual liquid phase of the primary α-Cu grains, and its product was α-CuzNi3Si. The third and fourth phase transformation could be described to the precipitation of the δ-Ni 2Si phase in the region close to the grain boundary phase and the internal of the primary α-Cu grains respectively.
AB - Rapid water quenching experiments were first carried out according to differential scanning calorimetry results, and then the microstructure and phase composition of such water quenching Cu-8·33Ni-1·67Si (wt-%) samples were investigated. Subsequently, calculation on the competition nucleation of the primary phase was also carried out. Based on the experimental and calculational results, the phase transformation behaviour of Cu-8·33Ni-1·67Si melts during the cooling process was discussed, and the results can be summarised as follows. First, the α-Cu phase formed as a primary phase due to the shorter incubation time and higher time dependent nucleation rate. Subsequently, a eutectic reaction occurred in the interdendritic residual liquid phase of the primary α-Cu grains, and its product was α-CuzNi3Si. The third and fourth phase transformation could be described to the precipitation of the δ-Ni 2Si phase in the region close to the grain boundary phase and the internal of the primary α-Cu grains respectively.
KW - Cu-Ni-Si alloys
KW - Microstructure
KW - Phase transformation
KW - Rapid water quenching
UR - http://www.scopus.com/inward/record.url?scp=84880525903&partnerID=8YFLogxK
U2 - 10.1179/1743284713Y.0000000247
DO - 10.1179/1743284713Y.0000000247
M3 - 文章
AN - SCOPUS:84880525903
SN - 0267-0836
VL - 29
SP - 995
EP - 999
JO - Materials Science and Technology
JF - Materials Science and Technology
IS - 8
ER -