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Microstructural characteristics and electrical resistivity of rapidly solidified Co-Sn alloys
作者姓名:XUJinfeng
作者单位:LaboratoryofMaterialsScienceinSpace,DepartmentofAppliedPhysics,NorthwesternPolytechnicalUniversity,Xi'an710072,China
摘    要:The rapid solidification behavior of Co-Sn alloys was investigated by melt spinning method.The growth morphology of αCo phase in Co-20% Sn hypoeutectic alloy changes senistively with cooling rate.A layer of columnar αCo dendrite forms near the roller side at low colling rates.This region becomes small and disappears as the cooling rate increases and a kind of very fine homogeneous microstructure characterized by the distribution of equiaxed αCo dendrites in γCo3Sn matrix is subsequently produced.For Co-34.2% Sn eutectic alloy,anomalous eutectic forms within the whole range of cooling rates.The increase of cooling rate has two obvious effects on both alloys:one is the microstructure refinement,and the other is that it produces more crystal defects to intensify the seattering of free electrons,leading to a remarkable increase of electrical resistivity,Under the condition that the grain boundary reflection coefficient γ approaches 1,the resistivity of rapidly solidified Co-Sn alloys can be predicted theoretically.

关 键 词:显微结构表征  电阻率  快速凝固法  Co  Sn  钴锡合金  枝状生长  冷却速度
收稿时间:2004-04-28
修稿时间:2004-08-26

Microstructural characteristics and electrical resistivity of rapidly solidified Co-Sn alloys
XUJinfeng.Microstructural characteristics and electrical resistivity of rapidly solidified Co-Sn alloys[J].Chinese Science Bulletin,2004,49(21):2242-2247.
Authors:Xu Jinfeng  Wang Nan  Wei Bingbo
Institution:(1) Laboratory of Materials Science in Space, Department of Applied Physics, Northwestern Polytechnical University, 710072 Xi’an, China
Abstract:The rapid solidification behavior of Co-Sn alloys was investigated by melt spinning method. The growth morphology of αCo phase in Co-20%Sn hypoeutectic alloy changes sensitively with cooling rate. A layer of columnar αCo dendrite forms near the roller side at low cooling rates. This region becomes small and disappears as the cooling rate increases and a kind of very fine homogeneous microstructure characterized by the distribution of equiaxed αCo dendrites in γCo3Sn matrix is subsequently produced. For Co-34.2%Sn eutectic alloy, anomalous eutectic forms within the whole range of cooling rates. The increase of cooling rate has two obvious effects on both alloys: one is the microstructure refinement, and the other is that it produces more crystal defects to intensify the scattering of free electrons, leading to a remarkable increase of electrical resistivity. Under the condition that the grain boundary reflection coefficient r approaches 1, the resistivity of rapidly solidified Co-Sn alloys can be predicted theoretically.
Keywords:rapid solidification  dendritic growth  eutectic growth  electrical resistivity    
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