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超细晶Mg-2.5Zn-1Ca合金制备及其组织性能研究
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兰州理工大学材料科学与工程学院 甘肃 兰州

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中图分类号:

TG379

基金项目:

兰州理工大学红柳一流学科建设计划项目


Preparation of High-strength, High-plasticity and Ultra-fine-grained Mg-2.5Zn-1Ca Magnesium Alloy and Research on Its Microstructure and Properties
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Affiliation:

School of Material Science and Engineering,Lanzhou University of Technology

Fund Project:

Program for Hongliu First-Class Discipline Con‐ struction Plan of Lanzhou University of Technology

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    摘要:

    本文通过挤压+等通道转角挤压(ECAP)复合加工工艺制备了超细晶Mg-2.5Zn-1Ca合金,采用OM、SEM、XRD、EBSD等手段分析变形过程中微观结构演变特征,结合力学性能变化,研究变形过程中合金强化机理。结果表明,经挤压+ECAP变形后,晶粒与第二相颗粒明显细化,其中挤压+2道次ECAP后获得了均匀的细晶组织,平均晶粒尺寸约1.1μm;同时,细小的Ca2Mg6Zn3颗粒弥散分布于基体中。晶粒细化是剧烈塑性变形、动态再结晶和细小弥散的Ca2Mg6Zn3相共同作用的结果。ECAP变形使合金的力学性能显著提高,2道次有最高的抗拉强度和延伸率,分别为275MPa和17%。随着ECAP变形道次的增加,织构强度逐渐减弱,基面织构逐渐转变为一种新的织构,并且ECAP变形合金有较高的非基面施密特因子,组织均匀细化,使得材料有更好的延伸率。

    Abstract:

    In this paper, an ultra-fine-grained Mg-2.5Zn-1Ca alloy was prepared by extrusion + equal channel angular extrusion (ECAP) composite processing technology. The microstructure evolution characteristics during the deformation process were analyzed by OM, SEM, XRD, EBSD etc., combined with mechanics performance changes, study alloy strengthening mechanism during deformation. The results show that after extrusion + ECAP deformation, the grains and the second phase grains are significantly refined, and the uniform fine grain structure is obtained after extrusion + 2 passes ECAP, with an average grain size of about 1.1μm; At the same time, the fine Ca2Mg6Zn3 particles are dispersed distributed in the matrix. The grain refinement is the result of the combined effect of severe plastic deformation, dynamic recrystallization, and the finely dispersed Ca2Mg6Zn3 phases. ECAP deformation significantly improves the mechanical properties of the alloy. The two passes have the highest tensile strength and elongation, which are 275MPa and 17% respectively. With the increase of ECAP deformation passes, the texture strength gradually weakens, and the basal texture gradually changes into a new texture. Moreover, ECAP deformation alloy has higher non-basal Schmid factor, and the microstructure is uniformly refined, which makes the material have better elongation.

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丁雨田,雷健,张鸿飞,沈悦,李瑞民,高钰璧,陈建军.超细晶Mg-2.5Zn-1Ca合金制备及其组织性能研究[J].稀有金属材料与工程,2022,51(6):2175~2184.[Ding Yutian, Lei Jian, Zhang Hongfei, Shen Yue, Li Ruimin, Gao Yubi, Chen Jianjun. Preparation of High-strength, High-plasticity and Ultra-fine-grained Mg-2.5Zn-1Ca Magnesium Alloy and Research on Its Microstructure and Properties[J]. Rare Metal Materials and Engineering,2022,51(6):2175~2184.]
DOI:10.12442/j. issn.1002-185X.20210439

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历史
  • 收稿日期:2021-05-17
  • 最后修改日期:2021-06-17
  • 录用日期:2021-07-12
  • 在线发布日期: 2022-07-06
  • 出版日期: 2022-06-29