Materials Science and Engineering

Grain refinement of Mg-Al binary alloys inoculated by in-situ oxidation

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  • Heng-bin LIAO1*, Li-ling MO1*, Cheng-bo LI1,2, Mei-yan ZHAN1, Jun DU1
1. School of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China;
2. School of Materials and Environment, Guangxi University for Nationalities, Nanning 530006, China

Online published: 2022-10-25

Abstract

Utilizing oxide inclusion to induce heterogeneous nucleation event is an available method to achieve grain refinement. In this study, Mg-Al binary alloys were refined by inoculation of in-situ oxidation process. Results show that MgO and MgAl2O4 phases are primary oxide products for Mg-xAl alloys inoculated by in-situ oxidation. For pure Mg and Mg-1Al alloy, MgO is the only oxide product. MgAl2O4 is another oxide product for Mg-xAl alloy as Al content increases to 3 wt.%. For Mg-3Al alloy, average grain size significantly decreases from 1135 to 237 mm, with a high grain refining ratio of 79.1%. Both MgO and MgAl2O4 possess nucleating potency for α-Mg grain. MgAl2O4 exhibits a higher nucleating potency due to the lower misfit with α-Mg. The grain refinement of Mg-xAl alloys inoculated by in-situ oxidation process is attributed to heterogeneous nucleation events of α-Mg grains on MgO or MgAl2O4 particles.

Cite this article

Heng-binLIAO*,Li-lingMO*,Cheng-boLI,Mei-yanZHAN,JunDU . Grain refinement of Mg-Al binary alloys inoculated by in-situ oxidation[J]. Transactions of Nonferrous Metals Society of China, 2022 , 32(10) : 3212 -3221 . DOI: 10.1016/S1003-6326(22)66014-X

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