Metals Advances ›› 2026, Vol. 46: 102-109.DOI: 10.1016/j.metadv.2025.11.002

• Research Article • Previous Articles    

Microstructure and mechanical property of large-diameter and low-alloyed Mg-Mn-Ca-Ce-Al alloy

Jie Song, Chang Zhu, Hucheng Pan(), Sen Wang, Sheng Wang, Zhen Pan, Zhihao Zeng, Gaowu Qin   

  1. Key Laboratory for Anisotropy and Texture of Materials (Ministry of Education), College of Materials Science and Engineering, Northeastern University, Shenyang 110819, China
  • Received:2025-08-29 Revised:2025-11-14 Accepted:2025-11-28 Online:2026-08-10 Published:2026-02-18
  • Contact: *E-mail address: panhc@atm.neu.edu.cn (H. Pan).

Abstract:

Large-diameter, low-alloyed Mg-1.0Mn-0.4Ca-0.2Ce-0.1Al (wt%, MXEA) alloy bars were produced by a low-temperature secondary extrusion (SE) process. The MXEA alloy underwent primary extrusion (PE) followed by homogenization treatment. Specifically, the samples subjected to SE exhibited enhanced mechanical properties, namely a yield strength (YS) of 357 MPa, ultimate tensile strength (UTS) of 366 MPa, and elongation (EL) of 6.8%. However, the PE-MXEA alloy resulted in inferior mechanical properties with UTS of 305 MPa, YS of 308 MPa, and EL of 13.1%, respectively. Microstructure characterization shows that the coarse dynamically recrystallized (DRXed) grains are formed in PE samples, while the SE at 260 °C could effectively refine the grain structure, with an average size of ∼750 nm. Moreover, the heterogeneous microstructure with strong texture is formed in SE MXEA samples, where non-DRXed regions contained high-density residual dislocations. Furthermore, the extrusion process promoted precipitation of nano-sized Mg2Ca, Al-Mn, and Mg12Ce phases. The synergistic effects of grain refinement strengthening, texture strengthening, dislocation strengthening, and precipitation strengthening collectively enhanced the overall mechanical property. By optimizing low-temperature extrusion parameters, this study provides guidance for designing the large-sized magnesium products.

Key words: Mg alloys, Microstructure, Mechanical properties, Strengthening mechanism, Low cost