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Microstructure and mechanical properties of A356 alloy with yttrium addition processed by hot extrusion
Authors:Zhifan Wei  Yushun Lei  Hong Yan  Xihao Xu  Jiajia He
Affiliation:1. School of Mechanical and Electrical Engineering, Nanchang University, Nanchang 330031, China;2. Key Laboratory of Light Alloy Preparation and Processing in Nanchang City, Nanchang 330031, China
Abstract:The effects of the rare earth element yttrium (Y) and hot extrusion on the microstructure and mechanical properties of A356 alloy were investigated by mechanical properties testing and microstructure observation. The results indicate that the addition of Y improves the microstructure of the as-cast alloy. The distribution of primary α-Al is uniform and orderly. The long needle-like eutectic Si phases and β-Fe phases turn to strips and short rods. When the content of Y increases to 0.2 wt%, the mean diameter of α-Al (40.3 μm) and the aspect ratio of the eutectic Si phase (2.3) reach the minimum values, which are 68.9% and 86.1% lower, respectively, than that of the alloy without Y addition. Under extrusion stress, the shape of the eutectic Si phase is changed from long rod-like to near grain-like after solution treatment. The size of the eutectic Si phase is significantly reduced. The needle-like β-Fe phases are squeezed and broken. The mechanical properties of the as-extruded alloy are significantly improved compared to the as-cast alloy. When the rare earth content is 0.2 wt%, the ultimate tensile strength, hardness and elongation of the alloy reach the maximum values, which are 328.2 MPa, 110.4 HV and 21.3%, respectively, and increase by 42.01%, 37.71% and 481.91%, respectively, in comparison to the as-cast alloy without Y addition.
Keywords:Corresponding author. School of Mechanical and Electrical Engineering, Nanchang University, Nanchang 330031, China.  A356 alloy with Y addition  Microstructure  Mechanical properties  Hot extrusion  Rare earths
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