Achieving excellent mechanical properties in Mg-5Bi-3Al alloy via ultra-fine grain and high-density precipitates

IF 13.8 1区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING Journal of Magnesium and Alloys Pub Date : 2025-02-01 DOI:10.1016/j.jma.2024.03.024
Hongrui Li , Chong Wang , Yukang An , Enyu Guo , Shuyan Shi , Fengyun Yu , Zongning Chen , Huijun Kang , Tongmin Wang
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Abstract

The development of low-cost, high-performance Mg alloys is crucial to the industrial applications of large-scale production of Mg alloys. In this work, extruded Mg-5Bi-3Al alloy with excellent mechanical properties is successfully prepared by modifying the extrusion temperatures (240 °C and 300 °C). The extruded alloy obtained ultra-high strength (yield strength = 380 MPa, ultimate tensile strength = 418 MPa) and excellent plasticity (elongation = 10.2%) at the extrusion temperature of 240 °C, the main contributing factors are primarily attributed to the synergistic effect of ultrafine recrystallized grain size (∼0.5 µm) and high density of Mg3Bi2 precipitates. Stacking faults within the sub-micron Mg3Bi2 phase are observed in the E240 alloy, confirming the plastic deformation capability of Mg3Bi2 phase. The effects of extrusion temperature on the microstructure, mechanical properties, and work-hardening behavior of the extruded Mg-5Bi-3Al alloys at room temperature are systematically investigated. The results suggest that decreasing the extrusion temperature can refine recrystallized grain size and Mg3Bi2 phase size, and the quantity of Mg3Bi2 phase is increased, while increasing the extrusion temperature can improve the degree of recrystallization and weaken texture. The work hardening rate is increased with the increased extrusion temperature, mainly due to the coarsening of grains and precipitates, and the weakening of texture. This work provides an experimental basis for preparing high-performance wrought Mg-5Bi-3Al alloys.
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通过超细晶粒和高密度析出物实现 Mg-5Bi-3Al 合金的优异机械性能
开发低成本、高性能的镁合金是实现镁合金规模化生产的关键。通过改变挤压温度(240℃和300℃),成功制备了具有优异力学性能的Mg-5Bi-3Al挤压合金。在240℃的挤压温度下,挤压合金获得了超高的强度(屈服强度= 380 MPa,极限抗拉强度= 418 MPa)和优异的塑性(伸长率= 10.2%),其主要影响因素主要是超细再结晶晶粒尺寸(~ 0.5µm)和高密度Mg3Bi2析出相的协同作用。在E240合金中观察到亚微米Mg3Bi2相的层错,证实了Mg3Bi2相的塑性变形能力。系统研究了挤压温度对室温挤压Mg-5Bi-3Al合金组织、力学性能和加工硬化行为的影响。结果表明,降低挤压温度可以细化再结晶晶粒尺寸和Mg3Bi2相尺寸,Mg3Bi2相数量增加,而提高挤压温度可以提高再结晶程度,削弱织构。随着挤压温度的升高,加工硬化速率增加,主要是由于晶粒和析出相的粗化和织构的弱化。为制备高性能变形Mg-5Bi-3Al合金提供了实验依据。
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来源期刊
Journal of Magnesium and Alloys
Journal of Magnesium and Alloys Engineering-Mechanics of Materials
CiteScore
20.20
自引率
14.80%
发文量
52
审稿时长
59 days
期刊介绍: The Journal of Magnesium and Alloys serves as a global platform for both theoretical and experimental studies in magnesium science and engineering. It welcomes submissions investigating various scientific and engineering factors impacting the metallurgy, processing, microstructure, properties, and applications of magnesium and alloys. The journal covers all aspects of magnesium and alloy research, including raw materials, alloy casting, extrusion and deformation, corrosion and surface treatment, joining and machining, simulation and modeling, microstructure evolution and mechanical properties, new alloy development, magnesium-based composites, bio-materials and energy materials, applications, and recycling.
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