Al添加量对Mg-xAl-1Zn-1Ca合金(x = 1,2 wt.%)室温变形和低温变形的影响

IF 15.8 1区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING Journal of Magnesium and Alloys Pub Date : 2024-12-05 DOI:10.1016/j.jma.2024.11.030
Hafiz Muhammad Rehan Tariq, Umer Masood Chaudry, Muhammad Ishtiaq, Minki Kim, Mansoor Ali, Tea-Sung Jun
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摘要

本研究探讨了Al添加对Mg-xAl-1Zn-1Ca (x = 1,2 wt.%)合金(分别称为AZX211和AZX311)显微组织、织构和力学变形行为的影响。在室温(24°C, RT)和低温(-150°C, CT)下进行拉伸试验,以探讨位错和孪晶的演变及其对强度、延性和硬化特性的影响。结果表明,AZX311在两种温度下均表现出优异的强度和延展性。这种独特的高拉伸强度和一致的延展性的平衡优于先前记录的镁合金,使AZX311成为需要强大机械性能和可靠延展性的应用的理想材料,特别是在低温条件下。这种合金在低温下的特殊强度归因于位错强化和边界强化的协同作用,其中位错运动障碍的增加导致了显著的硬化。纳米层错的存在和锥体滑移的更大激活,以及它们之间的相互作用,导致抗拉强度的大幅增加,同时在低温下保持延展性,使其适合低温应用。
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Effect of Al addition on the room and cryogenic temperature deformation of Mg-xAl-1Zn-1Ca alloy (x = 1, 2 wt.%)
This study explores the influence of Al addition on the microstructure, texture and mechanical deformation behavior of Mg-xAl-1Zn-1Ca (x = 1, 2 wt.%) alloy (referred as AZX211 and AZX311, respectively). Tensile tests were performed at room (24 °C, RT) and cryogenic temperature (-150 °C, CT) to probe the dislocation and twinning evolution and its consequent effect on the strength, ductility and hardening characteristics. The results revealed that AZX311 exhibited an outstanding combination of superior strength and excellent ductility at both temperatures. This unique balance of high tensile strength and consistent ductility outperforms previously documented magnesium alloys, positioning AZX311 as an ideal material for applications that demand both robust mechanical properties and reliable ductility, particularly under low-temperature conditions. The exceptional strength at cryogenic temperatures in this alloy is attributed to the synergistic effect of dislocation strengthening and boundary strengthening, where the increased barriers to dislocation movement lead to significant hardening. The presence of nano-stacking faults and greater activation of pyramidal slip, along with their interactions, result in a substantial increase in tensile strength while maintaining ductility at cryogenic temperature making it a suitable fit for cryogenic applications.
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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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