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Rapid dendrite growth in quaternary Ni-based alloys
作者姓名:SONG  Xianzheng  WANG  Haipeng  RUAN  Ying  WEI  Bingbo
作者单位:Department of Applied Physics, Northwestern Polytechnical University,Xi'an 710072, China
基金项目:The authors are grateful to E P. Dai, D Y. Zang, Y. J. Lü and W. J. Yao for their helpful discussions. This work was supported by the National Natural Science Foundation of China (Grant Nos. 50121101, 50271058 and 50395105), the Doctorate Foundation of Northwestern Polytechnique University and the NPU Young Teachers Scientific and Technological Innovation Foundation.
摘    要:Dendritic growth is one of the most common micro-structural formation mechanisms during crystal growth. Its morphology provides the kinetics information of crystal growth. Therefore, it is valuable to perform the research on rapid dendrite growth in order…

关 键 词:镍基合金  四元合金  高过冷度  枝晶长大  快速凝固
收稿时间:20 September 2005
修稿时间:2005-09-202006-11-16

Rapid dendrite growth in quaternary Ni-based alloys
SONG Xianzheng WANG Haipeng RUAN Ying WEI Bingbo.Rapid dendrite growth in quaternary Ni-based alloys[J].Chinese Science Bulletin,2006,51(8):897-901.
Authors:Xianzheng Song  Haipeng Wang  Ying Ruan  Bingbo Wei
Institution:(1) Department of Applied Physics, Northestern Polytechnical University, Xi’an, 710072, China
Abstract:The high undercooling and rapid solidification of Ni-10%Cu-10%Fe-10%Co quaternary alloy were achieved by electromagnetic levitation and glass fluxing techniques. The maximum undercooling of 276 K (0.16TL) was obtained in the experiments. All the solidified samples are determined to be α-Ni single-phase solid solutions by DSC thermal analysis and X-ray diffraction analysis. The microstructure of the α-Ni solid solution phase transfers from dendrite to equiaxed grain with an increase in undercooling, accompanied by the grain refinement effect. When the undercooling is very large, the solute trapping effect becomes quite significant and the microsegregation is suppressed. The experimental measurement of α-Ni dendrite growth velocity indicates that it increases with undercooling according to the relation, V=8×10−2×ΔT 1.2.
Keywords:high undercooling  dendrite growth  quaternary alloy  rapid solidification  
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