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Ma Zongyi, Lu Yuxiong and Bi Jing Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110015, P. R. China State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai 200030, P. R. China  
In situ Al 2O 3 and TiB 2 particles reinforced Al 3.2% Cu and Al 6.0%Cu alloy composites were fabricated from TiO 2 Al B CuO system. X ray diffraction analyses indicate that Al 2O 3 and TiB 2 are formed in two composites and no Al 2Ti appears, in situ formed Al 2O 3 and TiB 2 particles with a size of less than 2 μm are equiaxed and well distributed in Al matrix. Tensile tests at room temperature indicate that two Al Cu alloy matrix composites exhibit high strength, which increases with increasing Cu content of matrix alloy. Dynamic compression tests demonstrate that the strength of the Al Cu alloy matrix composites is insensitive to the strain rates, which can be explained by approximately identical dislocation density in the matrix of the composites deformed at different strain rates. Compressive creep tests at high temperature show that both composites exhibit high apparent stress exponents and the creep resistance of the composites is obviously increased with increasing Cu content of the matrix alloy.
【CateGory Index】: TG146.21
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