TY - JOUR
T1 - Primary spacing selection of Cu-Mn alloy under laser rapid solidification condition
AU - Pan, Q. Y.
AU - Huang, W. D.
AU - Lin, X.
AU - Zhou, Y. H.
PY - 1997/10
Y1 - 1997/10
N2 - In order to investigate the primary spacing selection under rapid solidification conditions, laser surface rapid resolidification experiments have been performed on Cu-26.6 wt.% Mn alloy. By taking transverse and then longitudinal sections of the directional growth dendrites/cells in the laser traces, the average primary spacing, spacing distribution range as well as the corresponding growth rate are quantitatively measured by SEM and image analyser. It has been found that there exists a wide distribution range in primary spacing under rapid solidification condition. As the growth rate increases, both the distribution range and the average spacing decrease. The maximum, λ1max, minimum, λ1min, and average primary spacing, λ̄1, as functions of growth rate, Vs, can be given by λ1max = 10.68V-0.28s, λ1min = 2.42V-0.22s, and λ̄1 = 510V-0.33s, respectively. Our experimental results are compared with the current KGT model for rapid dendritic growth, and a good agreement is found.
AB - In order to investigate the primary spacing selection under rapid solidification conditions, laser surface rapid resolidification experiments have been performed on Cu-26.6 wt.% Mn alloy. By taking transverse and then longitudinal sections of the directional growth dendrites/cells in the laser traces, the average primary spacing, spacing distribution range as well as the corresponding growth rate are quantitatively measured by SEM and image analyser. It has been found that there exists a wide distribution range in primary spacing under rapid solidification condition. As the growth rate increases, both the distribution range and the average spacing decrease. The maximum, λ1max, minimum, λ1min, and average primary spacing, λ̄1, as functions of growth rate, Vs, can be given by λ1max = 10.68V-0.28s, λ1min = 2.42V-0.22s, and λ̄1 = 510V-0.33s, respectively. Our experimental results are compared with the current KGT model for rapid dendritic growth, and a good agreement is found.
KW - Cellular/dendritic growth
KW - Cu-Mn alloy
KW - Laser rapid solidification
KW - Primary spacing
UR - http://www.scopus.com/inward/record.url?scp=0031549544&partnerID=8YFLogxK
U2 - 10.1016/S0022-0248(97)00273-X
DO - 10.1016/S0022-0248(97)00273-X
M3 - 文章
AN - SCOPUS:0031549544
SN - 0022-0248
VL - 181
SP - 109
EP - 116
JO - Journal of Crystal Growth
JF - Journal of Crystal Growth
IS - 1-2
ER -