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Tensile Properties of an Aluminum Matrix Composite Reinforced by SnO_2-coated Al_(18)B_4O_(33) Whisker

Tensile Properties of an Aluminum Matrix Composite Reinforced by SnO_2-coated Al_(18)B_4O_(33) Whisker
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摘要 Al18B4O33 whisker was coated by SnO2 particles using a chemical precipitation method, and an aluminum matrix composite reinforced by the coated whisker was fabricated by squeeze casting technique. It is found that the SnO2 coating can react with aluminum matrix during squeeze casting process, and Sn particles are induced near the interface between Al18B4O33 whisker and matrix. The tensile test at room temperature indicated that the tensile strength of Al18B4O33 whisker reinforced aluminum matrix composite can be enhanced by suitable content of SnO2 coating. The composites with various whisker coating contents exhibit maximum tensile plasticity at about 300 ℃, and the composite with a suitable whisker coating content could enhance its tensile plasticity evidently, which suggest that an Al18B4O33 whisker-Al composite with both high strength at room temperature and high formability at elevated temperature can be designed. Al18B4O33 whisker was coated by SnO2 particles using a chemical precipitation method, and an aluminum matrix composite reinforced by the coated whisker was fabricated by squeeze casting technique. It is found that the SnO2 coating can react with aluminum matrix during squeeze casting process, and Sn particles are induced near the interface between Al18B4O33 whisker and matrix. The tensile test at room temperature indicated that the tensile strength of Al18B4O33 whisker reinforced aluminum matrix composite can be enhanced by suitable content of SnO2 coating. The composites with various whisker coating contents exhibit maximum tensile plasticity at about 300 ℃, and the composite with a suitable whisker coating content could enhance its tensile plasticity evidently, which suggest that an Al18B4O33 whisker-Al composite with both high strength at room temperature and high formability at elevated temperature can be designed.
作者 王靓 费维栋
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2011年第6期1166-1170,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by the Specialized Research Fund for the Doctoral Program of Higher Education (No.20070213042)
关键词 WHISKER composite high temperature plasticity deformation SNO2 whisker composite high temperature plasticity deformation SnO2
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