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Effect of Cooling Rate on the Solidification Behavior and Microstructure of SiC_w/Al-18Si Composites

Effect of Cooling Rate on the Solidification Behavior and Microstructure of SiC_w/Al-18Si Composites
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摘要 Al-18Si alloy reinforced with 15%,20% and 25%(volume fraction) SiC whiskers were prepared by squeeze casting technique and the solidification behavior and microstructure of as-prepared composites at different cooling rates were studied by DSC,optical microscope,SEM and TEM.The results show that silicon phase is nucleated on SiC whiskers.With the increase of cooling rate,the degree of undercooling increases in the composites as well as in the alloys.The increase of cooling rate leads to a reduction in the size of eutectic Al-Si and also changes its morphology from short stick to equiaxed.However,the change of primary Si is complex.The primary Si size is refined,and then coarsened with increasing cooling rate.The primary Si morphology of composites changes from agglomerate to stick. Al-18Si alloy reinforced with 15%,20% and 25%(volume fraction) SiC whiskers were prepared by squeeze casting technique and the solidification behavior and microstructure of as-prepared composites at different cooling rates were studied by DSC,optical microscope,SEM and TEM.The results show that silicon phase is nucleated on SiC whiskers.With the increase of cooling rate,the degree of undercooling increases in the composites as well as in the alloys.The increase of cooling rate leads to a reduction in the size of eutectic Al-Si and also changes its morphology from short stick to equiaxed.However,the change of primary Si is complex.The primary Si size is refined,and then coarsened with increasing cooling rate.The primary Si morphology of composites changes from agglomerate to stick.
作者 耿林 魏红梅
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2009年第S1期1-4,共4页 武汉理工大学学报(材料科学英文版)
关键词 SiCw/Al-Si composites cooling rate solidification behavior MICROSTRUCTURE SiCw/Al-Si composites cooling rate solidification behavior microstructure
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参考文献18

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