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◆ Materials & Design2025-11-22· Materials science

Newly developed Mg-8Al-1Zn-0.6Ca-0.3La-0.3Mn alloy having outstanding extrudability and good strength-ductility synergy

Shuaiju Meng, Menglu Wang, Yaowen Wang, Tong Su, Keyi Chen

原始摘要(英文原文)· Original abstract
Improving the extrusion speed of magnesium alloys is crucial for expanding their applications. In this work, we report a novel heavily-alloyed Mg-8.0Al-1.0Zn-0.6Ca-0.3La-0.3Mn (AZXLM81100, wt.%) alloy that exhibits outstanding extrudability and good mechanical performance. The alloy can be extruded at a die-exit speed of 32.4 m/min. The excellent high-speed extrudability is attributable to its relatively high incipient melting temperature (604.2 °C), which results from the formation of thermally stable Al 2 Ca and Al 8 Mn 4 La phases. In addition to micron-sized Al 2 Ca and Al 8 Mn 4 La fragments, a limited number of nanoscale (Mg,Zn) 17 Al 12 and Mn particles are also uniformly dispersed in the high-speed-extruded AZXLM81100 alloy. Moreover, the as-extruded AZXLM81100 rod displays a fully dynamically recrystallized microstructure, characterized by a typical basal texture and fine grains with an average grain size of 6.5 ± 0.7 μm. Owing to significant grain boundary strengthening and precipitation hardening, the as-extruded alloy achieves a high tensile yield strength of 250.8 ± 3.5 MPa. Furthermore, the coordinated activation of basal and non-basal dislocations, together with a small fraction of tension twins contributes to effective tensile deformation, resulting in a relatively high elongation of 15.2 ± 1.1 %. The newly developed AZXLM81100 alloy demonstrates considerable potential for the manufacturing of extruded profiles due to its excellent strength-ductility balance.
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Newly developed Mg-8Al-1Zn-0.6Ca-0.3La-0.3Mn alloy having outstanding extrudability and good strength-ductility synergy — 科研速览 Science Skim