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Achieving enhanced mechanical properties in Mg-Gd-Y-Zn-Mn alloy by altering dynamic recrystallization behavior via pre-ageing treatment

机译:通过预衰老处理改变动态重结晶行为来实现Mg-Gd-Y-Zn-Mn合金中增强的机械性能

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摘要

The effects of pre-ageing treatment on the microstructure and mechanical properties of the Mg-9.2Gd-4.4Y-1.0Zn-0.8Mn (wt.%) alloy were investigated. Microstructural analysis indicated that the ageing treatment before extrusion led to the formation of dense prismatic β' and basal γ' precipitates in heat treated alloys. The presence of these precipitates and their solution obstructed the dynamic recrystallization process during hot extrusion. The lamellar long-period stacking ordered (LPSO) phases restrained the recrystallization through forming the kink band and releasing the stress concentration, and the fine β-Mgs(Gd, Y) particles suppressed the recrystallization by the particle pinning effect. The block-shaped LPSO phases and coarse β-Mg_5(Gd, Y) particles promoted the recrystallization following the particle stimulated nucleation (PSN) mechanism. The combined effects led to the formation of the bimodal microstructure, which shows fine recrystallized grains with random grain orientation and deformed grains with strong fiber texture. The bimodal microstructure with lower recrystallization fraction provides the alloy higher strength and lower ductility. With solid-solution and pre-ageing treatments, the as-extruded alloy shows the best strength-ductility balance with an ultimate tensile strength (UTS) of 455 MPa, tensile yield strength (TYS) of 382 MPa and elongation to failure (EL) of 11.0%. The outstanding mechanical properties are mainly attributed to the bimodal microstructure, strong fiber texture, β-Mg_5(Gd, Y) particles, lamellar and block-shaped LPSO phases.
机译:研究了预先治疗对Mg-9.2GD-4.4Y-1.0Zn-0.8Mn(重量%)合金的微观结构和机械性能的影响。微观结构分析表明,挤出前的老化处理导致致密棱镜β'和基底γ'在热处理合金中的沉淀物。这些沉淀物的存在和它们的溶液在热挤出过程中阻碍了动态再结晶过程。层状长周期堆叠有序(LPSO)阶段通过形成扭结和释放应力浓度并释放应力浓度,并且细β-Mgs(Gd,Y)颗粒通过颗粒循环效果抑制重结晶。块状的LPSO相和粗β-Mg_5(Gd,Y)颗粒促进颗粒刺激核(PSN)机制后的重结晶。组合效应导致了双峰组织的形成,其显示出具有随机晶粒取向和具有强纤维纹理的变形颗粒的精细再结晶晶粒。具有较低再结晶级分的双峰组织提供了较高的强度和延展性较低的延展性。具有固溶体和预衰老处理,用挤出的合金显示出最佳的强度 - 延展性平衡,其终极抗拉强度(UT)为455MPa,拉伸屈服强度(Tys)为382MPa和伸长率(EL) 11.0%。出色的机械性能主要归因于双峰组织,强纤维纹理,β-Mg_5(Gd,Y)颗粒,层状和块状的LPSO相。

著录项

  • 来源
    《Materials Science and Engineering》 |2020年第jul14期|139635.1-139635.10|共10页
  • 作者单位

    National Engineering Research Center for Magnesium Alloys College of Materials Science and Engineering Chongqing University Chongqing 400044 PR China MagIC - Magnesium Innovation Centre Helmholtz-Zentrum Geesthacht Max-Planck-Straβe 1 D-21502 Geesthacht Germany;

    National Engineering Research Center for Magnesium Alloys College of Materials Science and Engineering Chongqing University Chongqing 400044 PR China;

    National Engineering Research Center for Magnesium Alloys College of Materials Science and Engineering Chongqing University Chongqing 400044 PR China;

    MagIC - Magnesium Innovation Centre Helmholtz-Zentrum Geesthacht Max-Planck-Straβe 1 D-21502 Geesthacht Germany;

    MagIC - Magnesium Innovation Centre Helmholtz-Zentrum Geesthacht Max-Planck-Straβe 1 D-21502 Geesthacht Germany;

    MagIC - Magnesium Innovation Centre Helmholtz-Zentrum Geesthacht Max-Planck-Straβe 1 D-21502 Geesthacht Germany;

    National Engineering Research Center for Magnesium Alloys College of Materials Science and Engineering Chongqing University Chongqing 400044 PR China;

    National Engineering Research Center for Magnesium Alloys College of Materials Science and Engineering Chongqing University Chongqing 400044 PR China;

    National Engineering Research Center for Magnesium Alloys College of Materials Science and Engineering Chongqing University Chongqing 400044 PR China;

    National Engineering Research Center for Magnesium Alloys College of Materials Science and Engineering Chongqing University Chongqing 400044 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mg-Gd-Y-Zn-Mn alloy; Heat treatments; Morphology; Long-period stacking ordered phase; Mechanical properties;

    机译:Mg-Gd-Y-Zn-Mn合金;热处理;形态学;长期堆叠有序阶段;机械性能;

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