The microstructure and property of Al–Si alloy improved by the Sc-microalloying and Y2O3 nano-particles

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Abstract

The effect of Sc-microalloying and Y2O3 nano-particles on the microstructure and mechanical properties of as-cast Al-5.5Si alloy is studied by means of optical microscopy, transmission electron microscopy, hardness test and tensile test. The influence of annealing treatment on the microstructure and properties of the Al-Si alloys is also investigated as well. The results show that the addition of Sc and Y2O3 nano-particles could significantly improve the mechanical property of the Al-Si alloy. The ultimate tensile strength and yield strength of Al-Si-Sc/Y2O3 alloy are improved by around 45 and 71%, respectively, when compared to that of the Al-Si alloy. The effect of the nanosized particles (precipitated and added) on strengthening and deformation of Al-Si alloy is analyzed and discussed in detail. The results of annealing treatment indicate that the change in mechanical property of the Al-Si-Sc alloy during annealing treatment is mainly associated with the precipitation of the secondary Si phase.

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Chen, J., Wen, F., Liu, C., Li, W., Zhou, Q., Zhu, W., … Guan, R. (2021). The microstructure and property of Al–Si alloy improved by the Sc-microalloying and Y2O3 nano-particles. Science and Technology of Advanced Materials, 22(1), 205–217. https://doi.org/10.1080/14686996.2021.1891841

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