TY - JOUR
T1 - Effect of the δ phase on the deformation behavior in isothermal compression of superalloy GH4169
AU - Wang, K.
AU - Li, M. Q.
AU - Luo, J.
AU - Li, C.
PY - 2011/5/25
Y1 - 2011/5/25
N2 - The effect of the δ phase on the deformation behavior, including flow stress-strain curve, strain rate sensitivity exponent, strain hardening exponent and kinetic analysis, was investigated by isothermal compression of superalloy GH4169 with two kinds of solution treatment. The experimental results show that the existence of δ phase results in the decreasing of flow stress, and makes the flow stress reach a peak value at small strain. The strain rate sensitivity exponent (m) increases with the increasing of deformation temperature. The existence of δ phase leads to the increasing of strain rate sensitivity exponent (m) at a certain deformation temperature and strain. Moreover, the strain hardening exponent (n) has a close relationship with the deformation temperature, strain rate and strain, especially the strain affects n more significantly. The existence of δ phase results in the decreasing of n values, and makes the n values reach a negative value at small strain. It was observed that the changes in strain rate sensitivity exponent and strain hardening exponent were closely related to the microstructural evolution in the deformation process. Based on the kinetic analysis of superalloy GH4169 with two kinds of solution treatment, the apparent activation energy of superalloy GH4169 containing δ phase was calculated to be 476.136kJmol-1, which was slightly higher than that of superalloy GH4169 (455.434kJmol-1) without δ phase. And the peak flow stress in the isothermal compression of superalloy GH4169 was observed to increase with the increasing of parameter Z.
AB - The effect of the δ phase on the deformation behavior, including flow stress-strain curve, strain rate sensitivity exponent, strain hardening exponent and kinetic analysis, was investigated by isothermal compression of superalloy GH4169 with two kinds of solution treatment. The experimental results show that the existence of δ phase results in the decreasing of flow stress, and makes the flow stress reach a peak value at small strain. The strain rate sensitivity exponent (m) increases with the increasing of deformation temperature. The existence of δ phase leads to the increasing of strain rate sensitivity exponent (m) at a certain deformation temperature and strain. Moreover, the strain hardening exponent (n) has a close relationship with the deformation temperature, strain rate and strain, especially the strain affects n more significantly. The existence of δ phase results in the decreasing of n values, and makes the n values reach a negative value at small strain. It was observed that the changes in strain rate sensitivity exponent and strain hardening exponent were closely related to the microstructural evolution in the deformation process. Based on the kinetic analysis of superalloy GH4169 with two kinds of solution treatment, the apparent activation energy of superalloy GH4169 containing δ phase was calculated to be 476.136kJmol-1, which was slightly higher than that of superalloy GH4169 (455.434kJmol-1) without δ phase. And the peak flow stress in the isothermal compression of superalloy GH4169 was observed to increase with the increasing of parameter Z.
KW - Dynamic recrystallization
KW - Flow stress
KW - Kinetic analysis
KW - Strain hardening exponent
KW - Strain rate sensitivity exponent
UR - http://www.scopus.com/inward/record.url?scp=79953289871&partnerID=8YFLogxK
U2 - 10.1016/j.msea.2011.02.081
DO - 10.1016/j.msea.2011.02.081
M3 - 文章
AN - SCOPUS:79953289871
SN - 0921-5093
VL - 528
SP - 4723
EP - 4731
JO - Materials Science and Engineering: A
JF - Materials Science and Engineering: A
IS - 13-14
ER -