会议论文详细信息
4th Annual International Workshop on Materials Science and Engineering
Study on the Thermal Contraction Behaviors of Mg and Al
Meng, Yi^1 ; Yang, Yue^1 ; Sun, Jian^1 ; Cao, Leigang^1 ; Cui, Jianzhong^2
North China University of Technology, School of Mechanical and Materials Engineering, No. 5 Jinyuanzhuang Road, Shijingshan District, Beijing
100144, China^1
Northeastern University, Key Laboratory of Electromagnetic Processing of Materials, Ministry of Education, 110819, China^2
关键词: Contraction rate;    High temperature;    Low temperatures;    Primary dendrite;    Shrinkage behavior;    Solid-state cooling;    Thermal contraction;    Thermal shrinkage;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/381/1/012154/pdf
DOI  :  10.1088/1757-899X/381/1/012154
来源: IOP
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【 摘 要 】

By using a device which could achieve the 1-Dimensional shrinkage instead of 3D shrinkage of the casting during the solidification and cooling, the cooling curves and the relationship between the shrinkage / temperature and time were investigated. Then, the thermal shrinkage behaviors of pure Mg and Al ingots were obtained. As a result, the characterization of the thermal shrinkage behavior of Mg and Al was systematically investigated. The results indicate that the contraction rate of pure Mg ingot increases with the increase of growth rate of dendrites in quantity during solidification. The maximum contraction rate ν l, max will be reached when the formationof primary dendrite ends, and the value of ν l, max is 1.12×10-2 mm•s-1. However, the shrinkage will not be present until the solid state cooling starting for the pure Al ingot. The contraction of pure Mg ingot in solid state can be divided into two stages: high temperature solid shrinkage stage and low temperature solid shrinkage stage. And the rate of shrinkage firstly increases then decreases with the temperature dropping at the stage of high temperature solid shrinkage. The rate of solid shrinkage of pure Al ingot is present at the beginning of solid-state cooling. And its value is 9.69×10-3 mm•s-1, which is more than 3 times of that of pure Mg ingot. The shrinkage behaviors of both pure Mg and Al ingots tend to be uniform shrinkage when the temperature is below 400°C.

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