TY - JOUR
T1 - Formation of ζ phase in Cu-Ge peritectic alloys
AU - Ruan, Ying
AU - Dai, Fuping
AU - Wei, Bingbo
PY - 2007/10
Y1 - 2007/10
N2 - Rapid growth behavior of ζ phase has been investigated in the undercooling experiments of Cu-14%Ge, Cu-15%Ge, Cu-18.5%Ge and Cu-22%Ge alloys. Alloys of the four compositions obtain the maximum undercoolings of 202 K(0.17T L), 245 K(0.20T L), 223 K(0.20T L) and 176 K(0.17T L), respectively. As the content of Ge increases, the microstructural transition of "α(Cu) dendrite + ζ peritectic phase → ζ peritectic phase → ζ dendrite + (E<+ζ) eutectic" takes place in the alloy at small undercooling, while the microstructural transition of "fragmented α(Cu) dendrite + ζ peritectic phase → ζ peritectic phase → ζ dendrite + E< phase" happens in the alloy at large undercooling. EDS analysis of the Ge content in ζ peritectic phase indicates that undercooling enlarges the solid solubility of α dendrite, which leads to a decrease in the Ge content in ζ phase as undercooling increases. In the Cu-18.5%Ge alloy composed of ζ peritectic phase, the Ge content in ζ phase increases when undercooling increases, which is due to the restraint of the Ge enrichment on the grain boundaries by high undercooling effect.
AB - Rapid growth behavior of ζ phase has been investigated in the undercooling experiments of Cu-14%Ge, Cu-15%Ge, Cu-18.5%Ge and Cu-22%Ge alloys. Alloys of the four compositions obtain the maximum undercoolings of 202 K(0.17T L), 245 K(0.20T L), 223 K(0.20T L) and 176 K(0.17T L), respectively. As the content of Ge increases, the microstructural transition of "α(Cu) dendrite + ζ peritectic phase → ζ peritectic phase → ζ dendrite + (E<+ζ) eutectic" takes place in the alloy at small undercooling, while the microstructural transition of "fragmented α(Cu) dendrite + ζ peritectic phase → ζ peritectic phase → ζ dendrite + E< phase" happens in the alloy at large undercooling. EDS analysis of the Ge content in ζ peritectic phase indicates that undercooling enlarges the solid solubility of α dendrite, which leads to a decrease in the Ge content in ζ phase as undercooling increases. In the Cu-18.5%Ge alloy composed of ζ peritectic phase, the Ge content in ζ phase increases when undercooling increases, which is due to the restraint of the Ge enrichment on the grain boundaries by high undercooling effect.
KW - DSC thermal analysis
KW - High undercooling
KW - Peritectic transition
KW - Rapid solidification
UR - https://www.scopus.com/pages/publications/34948852302
U2 - 10.1007/s11434-007-0371-1
DO - 10.1007/s11434-007-0371-1
M3 - 文章
AN - SCOPUS:34948852302
SN - 1001-6538
VL - 52
SP - 2630
EP - 2635
JO - Chinese Science Bulletin
JF - Chinese Science Bulletin
IS - 19
ER -