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Effect of Yb and Zr Addition on Microstructure and Mechanical Properties of Al7Si0.3Mg Alloy
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1.Faculty of Materials Science and Engineering, Kunming University of Science and Technology, Yunnan 650093, China;2.Kunming Metallurgy Research Institute Company Limited, Yunnan 650031, China;3.School of Engineering, Southwest Petroleum University, Nanchong 637001, China

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Major Science and Technology Project in Yunnan Province-New Material Special Project (202102AB080004, 2018ZE005, 2019ZE001); Yunnan Province Transformation Research Institute Technology Development Research Project-Innovation Guidance and Technology Enterprise Cultivation Plan (202102AB080004)

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    Abstract:

    The effects of adding Yb and Zr elements on the microstructure and mechanical properties of Al7Si0.3Mg alloy and the mechanism of refinement and modification were investigated. The results show that the addition of Yb and Zr elements can significantly refine the α-Al matrix, transforming it from coarse dendritic crystals to fine petal-like crystals with a significant reduction in grain size, and the eutectic silicon metamorphoses from coarse needle-like to short rod-like. The modification mechanism of eutectic silicon is that the adsorption of Yb and Zr at the twin grooves (TPRE) changes the eutectic silicon growth mode and finally changes the eutectic silicon morphology. After heat treatment (T6), a large number of Al3(Yb, Zr) particles are precipitated to strengthen and refine the grain, and the addition of Yb and Zr can significantly improve the mechanical properties of the alloy. The tensile strength and elongation of the alloy (T6) are 296.3 MPa and 9.2% when the Yb content is 0.3wt% and the Zr content is 0.25wt%, which are 17% and 1.1 times higher than those of the unrefined and unmodified alloy, respectively.

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[Ji Quanxin, Du Jinghong, Zhang Yijie, Li Yuzhang, Feng Weiguang, Sun Yanhua, Yan Jikang, Gan Guoyou. Effect of Yb and Zr Addition on Microstructure and Mechanical Properties of Al7Si0.3Mg Alloy[J]. Rare Metal Materials and Engineering,2022,51(10):3580~3587.]
DOI:10.12442/j. issn.1002-185X.20210908

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History
  • Received:October 19,2021
  • Revised:December 27,2021
  • Adopted:January 29,2022
  • Online: October 31,2022
  • Published: October 28,2022