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Fabrication and properties of Al matrix composites strengthened by in situ alumina particulates

Fabrication and properties of Al matrix composites strengthened by in situ alumina particulates
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摘要 New aluminum matrix composites strengthened by Al2O3 particulates through stirring cast by adding NH4Al(SO4)2 to the molten aluminum have been fabricated. TEM observation shows that in-situ Al2O3 particulates are generally spherical and they are uniformly distributed in the Al matrix. Dry sliding wear test results show that the volume loss of the unreinforced Al matrix is about three times that of the Al2O3 reinforced metal matrix composite (MMC) and the volume loss of the MMC fabricated by adding Al2O3 is larger than that of the MMC by adding NH4Al(SO4)2. Lubricating sliding wear test results show that the volume loss of the MMCs increases more slowly than that of the matrix with the increasing of the load. New aluminum matrix composites strengthened by Al2O3 particulates through stirring cast by adding NH4Al(SO4)2 to the molten aluminum have been fabricated. TEM observation shows that in-situ Al2O3 particulates are generally spherical and they are uniformly distributed in the Al matrix. Dry sliding wear test results show that the volume loss of the unreinforced Al matrix is about three times that of the Al2O3 reinforced metal matrix composite (MMC) and the volume loss of the MMC fabricated by adding Al2O3 is larger than that of the MMC by adding NH4Al(SO4)2. Lubricating sliding wear test results show that the volume loss of the MMCs increases more slowly than that of the matrix with the increasing of the load.
出处 《Journal of University of Science and Technology Beijing》 CSCD 2006年第3期263-266,共4页 北京科技大学学报(英文版)
基金 This work was financially supported by the Key Project of Chinese Ministry of Education ( No.105055).
关键词 aluminum matrix composite ALUMINA microstructure WEAR aluminum matrix composite alumina microstructure wear
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参考文献1

  • 1R. O. Guo,P. K. Rohatgi.Chemical reactions between aluminum and fly ash during synthesis and reheating of Al-fly ash composite[J].Metallurgical and Materials Transactions B.1998(3)

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