Abstract
The microstructures and impact toughness of A1-7Si and Al-7Si-2.5Cu cast alloys were studied after various melt treatments like grain refinement and modification. The results indicate that combined grain refined and modified Al-7Si-2.5Cu alloys have microstructures consisting of uniformly distributed α-Al grains, interdendritic network of fine eutectic silicon and fine CuAl2 particles in the interdendritic region. These alloys exhibited improved impact toughness in as cast condition when compared to those treated by individual addition of grain refiner or modifier. The improved impact toughness of Al-7Si-2.5Cu alloys are related to breakage of the large aluminum grains and uniform distribution of eutectic silicon and fine CuAl2 particles in the interdendritic region resulting from combined refinement and modification. This paper attempts to investigate the influence of microstructural changes in the Al-7Si and Al-7Si-2Í5Cu cast alloys by grain refinement, modification and combined action of both on the impact toughness. © Indian Academy of Sciences.
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Basavakumar, K. G., Mukunda, P. G., & Chakraborty, M. (2007). Effect of melt treatment on microstructure and impact properties of Al-7Si and Al-7Si-2.5Cu cast alloys. Bulletin of Materials Science, 30(5), 439–445. https://doi.org/10.1007/s12034-007-0070-1
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