Enhanced mechanical properties and electromagnetic interference shielding effectiveness in Mg‐6Zn‐1Y‐1La‐0.5Zr alloy sheet by hot deformation

IF 5.8 2区 材料科学 Q2 CHEMISTRY, PHYSICAL Journal of Alloys and Compounds Pub Date : 2024-07-25 DOI:10.1016/j.jallcom.2024.175716
Wenlong Xu, Sihui Ouyang, Lu Deng, Guanzheng Zhu, Xianhua Chen, Fusheng Pan
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Abstract

Striking a balance between the mechanical properties and electromagnetic interference shielding effectiveness (EMI SE) of Mg alloys stands as a critical concern within the realm of electronics and communications. This study endeavors to optimize the mechanical properties and EMI SE of Mg alloy sheets through a combination of extrusion and rolling (E-R). OM, SEM, XRD, EBSD, and TEM obtained the microstructures of Mg‐6Zn‐1Y‐1La‐0.5Zr alloys under extrusion and different rolling strain treatments, and the effects of the microstructures on the mechanical properties and EMI SE were revealed. The microstructure of the as-extruded Mg‐6Zn‐1Y‐1La‐0.5Zr (abbreviated as ZKL611K) alloy exhibited a distinct bimodal microstructure, with refined dynamically recrystallized (DRXed) grains surrounding coarse unDRXed regions. Subsequent rolling treatments induced a decrease in the aspect ratio of the unDRXed regions, a rapid reduction of DRXed grains, and the accumulation of dislocations within the as-rolled alloy. Statistical analysis of mechanical properties and EMI SE revealed that an optimal balance in the sheets subjected to “extrusion + 37 % rolling reduction”, yield strength (YS) of 319 MPa, ultimate tensile strength (UTS) of 375 MPa, and elongation of 12.3 %. Furthermore, the EMI SE ranged from 81 dB to 114 dB within the frequency range of 30–1500 MHz. However, further increments in rolling reduction adversely affected mechanical properties while improving EMI SE. The observed enhancement in mechanical properties can be primarily attributed to the synergistic effects of grain size, second phase, dislocations, low-angle grain boundaries (LAGBs), and texture. Meanwhile, the improved EMI SE can be mainly attributed to the diffuse distribution of the second phase at multiple scales and the modulation of the texture through E-R treatments.
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通过热变形提高 Mg-6Zn-1Y-1La-0.5Zr 合金板材的机械性能和电磁干扰屏蔽效果
在镁合金的机械性能和电磁干扰屏蔽效果(EMI SE)之间取得平衡是电子和通信领域的一个关键问题。本研究试图通过挤压和轧制(E-R)相结合的方法,优化镁合金板材的机械性能和电磁干扰屏蔽效果。通过光学显微镜、扫描电镜、XRD、EBSD 和 TEM 获得了 Mg-6Zn-1Y-1La-0.5Zr 合金在挤压和不同轧制应变处理下的微观结构,并揭示了微观结构对力学性能和 EMI SE 的影响。挤压成型的 Mg-6Zn-1Y-1La-0.5Zr(简称 ZKL611K)合金的微观结构呈现出明显的双峰微观结构,细化的动态再结晶(DRXed)晶粒围绕着粗大的非 DRXed 区域。随后的轧制处理导致未动态再结晶区域的长宽比减小,动态再结晶晶粒迅速减少,位错在轧制合金内部积累。机械性能和 EMI SE 的统计分析显示,经过 "挤压 + 37% 轧制减薄 "处理的板材达到了最佳平衡,屈服强度 (YS) 为 319 兆帕,极限抗拉强度 (UTS) 为 375 兆帕,伸长率为 12.3%。此外,在 30-1500 兆赫的频率范围内,电磁干扰 SE 为 81 分贝至 114 分贝。然而,在改善 EMI SE 的同时,轧制减薄的进一步增加会对机械性能产生不利影响。所观察到的机械性能提高主要归因于晶粒尺寸、第二相、位错、低角度晶界(LAGBs)和纹理的协同效应。同时,EMI SE 的改善主要归因于第二相在多个尺度上的弥散分布以及通过 E-R 处理对纹理的调节。
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来源期刊
Journal of Alloys and Compounds
Journal of Alloys and Compounds 工程技术-材料科学:综合
CiteScore
11.10
自引率
14.50%
发文量
5146
审稿时长
67 days
期刊介绍: The Journal of Alloys and Compounds is intended to serve as an international medium for the publication of work on solid materials comprising compounds as well as alloys. Its great strength lies in the diversity of discipline which it encompasses, drawing together results from materials science, solid-state chemistry and physics.
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