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Adiabatic shear behaviors in rolled and annealed pure titanium subjected to dynamic impact loading

机译:承受动态冲击载荷的轧制和退火纯钛中的绝热剪切行为

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摘要

The hat-shaped samples cut from rolled and annealed titanium plates were prepared to explore the adiabatic shear behaviors subjected to high-strain-rate deformation operated via Split Hopkinson Pressure Bar. The dynamic shear response calculation reveals that dynamic deformation processes of both state samples can be divided in similar three stages but rolled sample shows a higher susceptibility of adiabatic shear localization compared with the annealed one. Optical microscopy and electronic backscatter diffraction technique (EBSD) were used to systematically analyze the microstructure and texture characteristics. The results show that adiabatic shear bands form in both state samples and rotational dynamic recrystallization (RDRX) occurs within shear area and results in the formation of ultrafine equiaxed grains. Furthermore, ultrafine equiaxed grains within adiabatic shear bands have the same texture feature that < 11-20 > direction and {10-10} plane parallel to macro local shear direction and shear plane respectively. In the deformation region around the shear band, {10-12} < -1011 > tensile and {11-22} < 11-2-3 > compressive two types twins are observed in both state samples and {10-12} < -1011 > tensile twins are more frequently observed in rolled sample. In the rolled sample, {10-12} < -1011 > tensile twins are more likely to happen in the hat-brim side than the hat-body side due to the difference of stress state in two sides.
机译:准备了从轧制和退火的钛板上切下的帽状样品,以研究通过Split Hopkinson压力棒进行高应变率变形的绝热剪切行为。动态剪切响应计算表明,两种状态样品的动态变形过程可分为相似的三个阶段,但与退火样品相比,轧制样品显示出绝热剪切局部化的敏感性更高。光学显微镜和电子背散射衍射技术(EBSD)被用来系统地分析其微观结构和织构特征。结果表明,在两个状态样品中均形成了绝热剪切带,并且在剪切区域内发生了旋转动态重结晶(RDRX),并导致了超细等轴晶的形成。此外,绝热剪切带内的超细等轴晶具有相同的织构特征,即<11-20>方向和{10-10}平面分别平行于宏观局部剪切方向和剪切平面。在剪切带周围的变形区域中,在两个状态样本中均观察到{10-12} <-1011>拉伸和{11-22} <11-2-3>压缩两个类型的孪晶,而{10-12} <- 1011>拉伸孪晶在轧制样品中更常见。在轧制样品中,由于帽盖侧面的应力状态不同,{10-12} <-1011>拉伸孪晶更可能出现在帽盖侧面而不是帽身侧面。

著录项

  • 来源
    《Materials Science and Engineering》 |2017年第8期|95-106|共12页
  • 作者单位

    School of Materials Science and Engineering, Central South University, Changsha 410083, China;

    School of Materials Science and Engineering, Central South University, Changsha 410083, China;

    School of Materials Science and Engineering, Central South University, Changsha 410083, China;

    School of Materials Science and Engineering, Central South University, Changsha 410083, China;

    School of Materials Science and Engineering, Central South University, Changsha 410083, China;

    School of Materials Science and Engineering, Central South University, Changsha 410083, China;

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

    Shear bands; Titanium; Microstructure; Twinning; Dynamic recrystallization;

    机译:剪切带;钛;微观结构孪生;动态重结晶;

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