TY - JOUR
T1 - Prediction of the high gradient absolute stability of the unidirectional solidification interface
AU - Ding, Guolu
AU - Huang, Weidong
AU - Lin, Xin
AU - Li, Yanmin
AU - Zhou, Yaohe
PY - 1996
Y1 - 1996
N2 - The stability of a liquild-solid interface during the unidirectional solidification of a dilute binary alloy is further analyzed based on the M-S interface stability theory by incorporating mathematical deduction with numerical calculation. A new phenomenon, the high gradient absolute stability (HGAS) which is independent of solidification velocity, is predicted. The critical condition for this kind of absolute stability, namely the critical temperature gradient formula expressed in terms of system characteristics, is theoretically given. The critical temperature gradient values for HGAS of several typical alloys calculated with the obtained formula are all beyond the order of 103K/mm, which can only be attained in the metal surface rapid re-solidification by means of high energy beams.
AB - The stability of a liquild-solid interface during the unidirectional solidification of a dilute binary alloy is further analyzed based on the M-S interface stability theory by incorporating mathematical deduction with numerical calculation. A new phenomenon, the high gradient absolute stability (HGAS) which is independent of solidification velocity, is predicted. The critical condition for this kind of absolute stability, namely the critical temperature gradient formula expressed in terms of system characteristics, is theoretically given. The critical temperature gradient values for HGAS of several typical alloys calculated with the obtained formula are all beyond the order of 103K/mm, which can only be attained in the metal surface rapid re-solidification by means of high energy beams.
KW - Critical temperature gradient
KW - High gradient absolute stability (HGAS)
KW - M-S theory
UR - http://www.scopus.com/inward/record.url?scp=20044387991&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:20044387991
SN - 1002-0071
VL - 6
SP - 591
EP - 592
JO - Progress in Natural Science: Materials International
JF - Progress in Natural Science: Materials International
IS - 5
ER -