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首页> 外文期刊>Materials Science and Engineering >Influences of crystallography and delamination on anisotropy of Charpy impact toughness in API X100 pipeline steel
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Influences of crystallography and delamination on anisotropy of Charpy impact toughness in API X100 pipeline steel

机译:晶体学和分层对API X100管线钢夏比冲击韧性各向异性的影响

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摘要

The anisotropic behavior of Charpy toughness has been investigated in API X100 pipeline steel, and the combination of crystallographic textures and delamination is considered to be the reason for the observed anisotropy in Charpy toughness. The crystallographic textures can contribute to anisotropy by increasing the probability of {001} cleavage planes parallel to the fracture surfaces of the Charpy impact specimens, and biasing available slip systems for ductile fracture. Thus, the Charpy impact toughness is worst at 45° to the rolling direction, because the grains with {001} cleavage planes parallel to the Charpy specimen fracture surfaces is much more at that orientation. The existence of much more {001} cleavage planes at the 45° orientation can lead to a greater probability of cleavage fracture compared with the other orientations at the same temperature. Delamination related to elongated grain structures and {001} grain planes parallel to the rolling plane also lead to anisotropy in Charpy properties. The deep groove shape cleavage crack induced by delamination in the upper shelf region is responsible for a decrease in upper shelf energy. Delamination as a part of the fracture energy absorption process in the ductile-brittle transition region also entails additional plasticity, resulting in an increase in impact energy. Therefore, delamination can also play a role in the anisotropy of Charpy toughness.
机译:已经在API X100管线钢中研究了夏比韧性的各向异性行为,并且将晶体学织构和分层相结合被认为是观察到夏比韧性各向异性的原因。晶体学纹理可以通过增加平行于夏比冲击试样断裂面的{001}分裂面的可能性,并为韧性断裂偏置可用的滑移系统,来增加各向异性。因此,夏比冲击韧性在与轧制方向成45°角时最差,因为{001}分裂面平行于夏比试样断裂面的晶粒在该方向上更多。与在相同温度下的其他取向相比,在45°取向上存在更多的{001}分裂平面会导致更大的分裂断裂可能性。与细长晶粒结构和平行于轧制平面的{001}晶面有关的分层也导致夏比特性的各向异性。在上层架区域中由分层引起的深槽形解理裂缝是上层架能量降低的原因。在韧性-脆性过渡区中,作为断裂能吸收过程一部分的脱层还需要额外的可塑性,从而导致冲击能的增加。因此,分层也可以在夏比韧性的各向异性中起作用。

著录项

  • 来源
    《Materials Science and Engineering》 |2014年第23期|53-62|共10页
  • 作者单位

    State Key Laboratory of Rolling Technology and Automation, Northeastern University, P.O. Box 105, No. 11, Lane 3, Wenhua Road, Heping District, Shenyang 110819, People's Republic of China;

    State Key Laboratory of Rolling Technology and Automation, Northeastern University, P.O. Box 105, No. 11, Lane 3, Wenhua Road, Heping District, Shenyang 110819, People's Republic of China;

    State Key Laboratory of Rolling Technology and Automation, Northeastern University, P.O. Box 105, No. 11, Lane 3, Wenhua Road, Heping District, Shenyang 110819, People's Republic of China;

    State Key Laboratory of Rolling Technology and Automation, Northeastern University, P.O. Box 105, No. 11, Lane 3, Wenhua Road, Heping District, Shenyang 110819, People's Republic of China;

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

    Pipeline steel; X100 steel; Anisotropy; Crystallographic texture; Delamination;

    机译:管线钢;X100钢;各向异性晶体结构;分层;

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