通过挤压和等沟道角压(EX-ECAP)制造的 Mg-8.7Gd-4.18Y-0.42Zr 镁合金的延展性提升

IF 3.5 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Ling Zhang, Yinglong Li
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引用次数: 0

摘要

本文旨在分析 Mg-8.7Gd-4.18Y-0.42Zr(重量百分比)镁合金的微观结构、纹理发展、变形模式和机械性能,该合金在经历传统挤压的同时还经历了等沟道角压(EX-ECAP)变形。研究结果表明,原挤压合金显示出明显的基底纹理,而经过 ECAP 的 GW94K 合金则显示出与挤压方向倾斜约 45°的基底极点。通过 Bc 路径在 370 ℃ 下进行 4p-ECAP 处理后,合金的微观结构表现出高度的均匀性,细晶粒面积分数为 92.7%,平均晶粒尺寸为 3 μm。GW94K 合金的伸长率在 ECAP 通量增加时显著增加,但极限拉伸强度(UTS)明显下降。特别是,经过 ECAP 处理的样品在挤压方向上的室温拉伸伸长率为 36.8%。这一现象主要归因于反复 ECAP 过程中纹理的演变,导致 GW94K 合金在 ECAP 变形过程中激活了多种变形模式。此外,研究结果表明,以高 Schmid 因子和 IGMA 分析为特征的多重滑移系统的存在极大地影响了均匀伸长率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ductility enhancement in Mg–8.7Gd–4.18Y–0.42Zr magnesium alloy fabricated through extrusion and equal channel angular pressing (EX-ECAP)

The goal of this article was to analyze the microstructural, texture development, deformation mode, and mechanical properties of a Mg–8.7Gd–4.18Y–0.42Zr (wt%) magnesium alloy that underwent conventional extrusion in conjunction with equal channel angular pressing (EX-ECAP) deformation. The findings indicate that as-extruded alloy reveals a significant basal texture, while the ECAPed GW94K alloy demonstrates basal poles that are inclined ~ 45° from the extrusion direction. After 4p-ECAP process at 370 °C via the Bc path, the microstructure of the alloy exhibits a high level of uniformity, with a fine grain area fraction of 92.7% and an average grain size of 3 μm. The GW94K alloy experiences a significant increase in elongation when the ECAP pass is increased, although the ultimate tensile strength (UTS) decreases remarkably. In particular, the sample subjected to ECAP demonstrates a room-temperature tensile elongation of 36.8% in the extrusion direction. This phenomenon can be ascribed primarily to the evolution of the texture during repeated ECAP processes, leading to the activation of multiple deformation modes in ECAP deformation process of the GW94K alloy. Furthermore, the results suggest that the presence of multiple slip systems, characterized by their high Schmid factor and IGMA analyses, significantly influences the uniform elongation.

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来源期刊
Journal of Materials Science
Journal of Materials Science 工程技术-材料科学:综合
CiteScore
7.90
自引率
4.40%
发文量
1297
审稿时长
2.4 months
期刊介绍: The Journal of Materials Science publishes reviews, full-length papers, and short Communications recording original research results on, or techniques for studying the relationship between structure, properties, and uses of materials. The subjects are seen from international and interdisciplinary perspectives covering areas including metals, ceramics, glasses, polymers, electrical materials, composite materials, fibers, nanostructured materials, nanocomposites, and biological and biomedical materials. The Journal of Materials Science is now firmly established as the leading source of primary communication for scientists investigating the structure and properties of all engineering materials.
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