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Microstructure, texture and mechanical properties evolution of extruded fine-grained Mg-Y sheets during annealing

机译:退火过程中挤压出的Mg-Y细晶Mg-Y片材的组织,织构和力学性能演变

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摘要

The microstructure, texture and mechanical properties evolution of the extruded fine-grained Mg-(1, 5) Y (wt%) alloy sheets were investigated during annealing. The as-extruded sheets exhibited a fully dynamic recrystallized (DRXed) microstructure consisting of uniform and fine equiaxed grains (5.7–8.7 µm) and a small amount of YH2second phase particles. Both sheets exhibited significant thermal stability at 300 °C annealing and remarkable grain growth at temperatures higher than 400 °C. The measured grain growth activation energy (Q) of Mg-1Y at all temperatures tested was 91 ± 3 kJ/mol, suggesting that the growth was controlled by grain boundary diffusion. Meanwhile, for Mg-5Y alloy at lower temperatures (300–400 °C), theQvalue (59 kJ/mol) indicated that the grain growth was controlled by grain boundary diffusion while theQvalue (175 kJ/mol) at higher temperatures (400–450 °C) implied that lattice self-diffusion controlled the process. A representative rare-earth texture was present for both sheets in the as-extruded condition, and remarkable basal texture weakening was observed with the grain growth during each isothermal annealing process. The texture weakening can be ascribed to the preferential growth of non-basal oriented grains based on the EBSD analysis, which was likely related to the segregation of Y atoms at grain boundaries. The microhardness and grain size relationship can be described well by the Hall-Petch relation for all the annealed sheets, while the yield stress was not the case indicating that the macroscopic strength was more sensitive to the texture than the localized microhardness.
机译:研究了退火过程中挤压出的细粒Mg-(1,5)Y(wt%)合金薄板的组织,织构和力学性能演变。挤压后的片材表现出完全动态的重结晶(DRXed)微观结构,该组织由均匀且细小的等轴晶粒(5.7-8.7μm)和少量的YH2第二相颗粒组成。两种片材均在300 C的退火温度下表现出显着的热稳定性,并在高于400 C的温度下表现出明显的晶粒长大。在所有测试温度下测得的Mg-1Y的晶粒生长活化能(Q)为91±3 kJ / mol,表明生长受晶界扩散控制。同时,对于在较低温度(300–400 C)下的Mg-5Y合金,其Q值(59 kJ / mol)表示晶粒生长受到晶界扩散的控制,而在较高温度(400–400℃)下的Q值(175 kJ / mol)表示。 450°C)暗示晶格自扩散控制了这一过程。在挤压状态下,两张板材均存在代表性的稀土织构,并且在每个等温退火过程中,随着晶粒的生长,观察到明显的基础织构减弱。基于EBSD分析,纹理弱化可归因于非基础取向晶粒的优先生长,这可能与Y原子在晶界处的偏析有关。显微硬度和晶粒尺寸的关系可以通过所有退火板的霍尔-帕奇关系很好地描述,而屈服应力不是表明宏观强度比局部显微硬度对织构更敏感的情况。

著录项

  • 来源
    《Materials Science and Engineering》 |2018年第21期|24-35|共12页
  • 作者单位

    Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University;

    Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University;

    Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University;

    Nano and Heterogeneous Materials Center, School of Materials Science and Engineering, Nanjing University of Science and Technology;

    Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University;

    Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University;

    National Engineering Research Center of Light Alloys Net Forming, School of Materials Science and Engineering, Shanghai Jiao Tong University;

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

    Mg-Y alloy; Annealing; Grain growth; Texture weakening; Mechanical properties;

    机译:Mg-Y合金退火晶粒长大织构减弱机械性能;

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