Acta Metallurgica Sinica (English Letters) ›› 2022, Vol. 35 ›› Issue (12): 1935-1945.DOI: 10.1007/s40195-022-01428-0

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Strengthening Mechanism and Microstructure of Deformable Ti Particles Reinforced AZ91 Composite

Biao Tang1, Jian-Bo Li1,2(), Jun-Liu Ye1, Huan Luo1, Yi-Tao Wang1, Bo Guan1, Yang-Fan Lu1, Xian-Hua Chen1(), Kai-Hong Zheng3, Fu-Sheng Pan1   

  1. 1School of Materials Science and Engineering, Chongqing University, Chongqing, 400044, China
    2International Joint Laboratory for Light Alloys (MOE), School of Materials Science and Engineering, Chongqing University, Chongqing, 400044, China
    3Institute of New Materials, Guangdong Academy of Sciences, Guangzhou, 510650, China
  • Received:2022-03-17 Revised:2022-04-28 Accepted:2022-05-03 Online:2022-12-10 Published:2022-06-23
  • Contact: Jian-Bo Li,Xian-Hua Chen
  • About author:Xian-Hua Chen, xhchen@cqu.edu.cn
    Jian-Bo Li, lijianbo1202@cqu.edu.cn;

Abstract:

In this study, the deformable titanium (Ti) particles reinforced AZ91 composite was successfully prepared by powder metallurgy and subsequent extrusion. The mechanical properties and microstructural evolution of pure AZ91 and 5Ti/AZ91 composite were studied. The yield strength, ultimate tensile strength, and elongation of 5Ti/AZ91 composite are measured to be 212 MPa, 323 MPa, and 10.1%, respectively. Microstructure analysis revealed that Ti particles are elongated along the extrusion direction, forming a discontinuous strip Ti particles, fine precipitated Mg17Al12 phase inhibits dynamic recrystallization (DRX) behavior through Zener pinning effect and hinders the growth of matrix grains, resulting in refiner grains of 5Ti/AZ91 composite. Heterogeneous deformed Ti particles and magnesium (Mg) matrix to generate additional heterogeneous deformation-induced (HDI) strengthening. Heterogeneous deformation-induced strengthening mainly contributed to the increment of yield strength for 5Ti/AZ91 composite.

Key words: Magnesium matrix composites, Ti particles, Recrystallization, Mechanical properties, Heterogeneous deformation