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首页> 外文期刊>Materials Science and Engineering >Dynamic restoration of the ferrite and austenite phases during hot compressive deformation of a lean duplex stainless steel
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Dynamic restoration of the ferrite and austenite phases during hot compressive deformation of a lean duplex stainless steel

机译:瘦双相不锈钢热压缩变形中铁素体和奥氏体相的动态恢复

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摘要

The active restoration processes within the ferrite and austenite phases were investigated in a Ni-free duplex stainless steel with the 75/25 austenite/ferrite ratio performing compression tests over the wide range of temperature and strain rate (700-1000 °C and 0.001-0.1s~(-1), respectively). The substructural features under different Zener-Hollomon parameters (Z) were examined using the electron backscatter diffraction analysis. A significant portion of flow softening was attributed to the active softening mechanisms in the continuous network of ferrite phase. The ferrite was softened through continuous dynamic recrystallization (CDRX) at high Z values, but the dynamic recovery (DRV) surmounted CDRX at low Z parameters. Interestingly, the discontinuous dynamic recrystallization (DDRX) mechanism was testified by increasing temperature and strain rate, i.e. at medium Z values. DDRX occurred by the growth of high-angle subgrains near the austenite/ferrite interfaces. With decreasing Z values, an increase in subgrain and grain sizes was observed. Contrarily to ferrite, the austenite phase was softened mostly through the dynamic recovery mechanism. At higher Z values microband arrays were formed in austenite holding specific character resembling to band-like misorientation gradients. However, under the lower Z values, a small fraction of recrystallized grains was formed through the CDRX/DDRX mechanisms. This was justified considering the lower strain accommodation in the austenite phase during deformation of duplex stainless steel.
机译:在无Ni-FreeLypled不锈钢中研究了铁素体和奥氏体相的活性修复过程,其中75/25奥氏体/铁氧体比在宽范围的温度和应变率(700-1000°C和0.001-)上进行压缩试验分别为0.1s〜(-1))。使用电子反向散射衍射分析检查不同ZENER-HOLLOMON参数(Z)下的亚结构特征。流动软化的一部分归因于铁氧体相的连续网络中的主动软化机制。通过高Z值的连续动态再结晶(CDRX)软化铁氧体,但在低Z参数下,动态恢复(DRV)估计CDRX。有趣的是,通过增加温度和应变速率,即在培养基Z值中作证不连续的动态重结晶(DDRX)机制。 DDRX发生在奥氏体/铁氧体接口附近的高角度子化的生长发生。随着Z值的降低,观察到粒子和晶粒尺寸的增加。相反到铁素体,奥氏体相通过动态回收机制软化。在较高的Z值下,在奥氏体中形成微多手阵列,其在奥氏体上形成类似于带状错误梯度的特定字符。然而,在较低的Z值下,通过CDRX / DDRX机制形成一小部分重结晶晶粒。考虑到双相不锈钢的变形期间,考虑到奥氏体相位的较低应变容纳的典范。

著录项

  • 来源
    《Materials Science and Engineering》 |2020年第24期|139400.1-139400.23|共23页
  • 作者单位

    Hot Deformation & Thermomechanical Processing of High Performance Engineering Materials Lab. School of Metallurgy and Materials Engineering College of Engineering University of Tehran Tehran Iran;

    Hot Deformation & Thermomechanical Processing of High Performance Engineering Materials Lab. School of Metallurgy and Materials Engineering College of Engineering University of Tehran Tehran Iran;

    Hot Deformation & Thermomechanical Processing of High Performance Engineering Materials Lab. School of Metallurgy and Materials Engineering College of Engineering University of Tehran Tehran Iran;

    Hot Deformation & Thermomechanical Processing of High Performance Engineering Materials Lab. School of Metallurgy and Materials Engineering College of Engineering University of Tehran Tehran Iran;

    Centre for Advanced Steels Research University of Oulu Oulu Finland;

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

    Duplex stainless steel; Hot deformation; Austenite; Ferrite; Restoration processes;

    机译:双相不锈钢;热变形;奥氏体;铁氧体;恢复过程;

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