THE INFLUENCE OF BUOYANT FORCES AND VOLUME FRACTION OF PARTICLES ON THE PARTICLE PUSHING ENTRAPMENT TRANSITION DURING DIRECTIONAL SOLIDIFICATION OF AL/SIC AND AL/GRAPHITE COMPOSITES

被引:132
作者
STEFANESCU, DM
MOITRA, A
KACAR, AS
DHINDAW, BK
机构
[1] Solidification Laboratory, Department of Metallurgical and Materials Engineering, The University of Alabama, Tuscaloosa, 35487-0202, AL
来源
METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE | 1990年 / 21卷 / 01期
关键词
D O I
10.1007/BF02656440
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Directional solidification experiments in a Bridgman-type furnace were used to study particle behavior at the liquid/solid interface in aluminum metal matrix composites. Graphite or siliconcarbide particles were first dispersed in aluminum-base alloys via a mechanically stirred vortex. Then, 100-mm-diameter and 120-mm-long samples were cast in steel dies and used for directional solidification. The processing variables controlled were the direction and velocity of solidification and the temperature gradient at the interface. The material variables monitored were the interface energy, the liquid/particle density difference, the particle/liquid thermal conductivity ratio, and the volume fraction of particles. These properties were changed by selecting combinations of particles (graphite or silicon carbide) and alloys (Al-Cu, Al-Mg, Al-Ni). A model which considers process thermodynamics, process kinetics (including the role of buoyant forces), and thermophysical properties was developed. Based on solidification direction and velocity, and on materials properties, four types of behavior were predicted. Sessile drop experiments were also used to determine some of the interface energies required in calculation with the proposed model. Experimental results compared favorably with model predictions. © 1990 The Metallurgical of Society of AIME.
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页码:231 / 239
页数:9
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