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Fatigue crack growth behavior in a harmonic structure designed austenitic stainless steel

机译:谐波结构中疲劳裂纹生长行为设计奥氏体不锈钢

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摘要

Heterogeneous nanograined structures have been proposed to achieve unprecedented mechanical properties. The objective of the present work is to investigate fatigue crack growth behavior of harmonic structure designed austenitic stainless steels at room temperature. The harmonic structured SUS316L steels were produced by mechanical milling and subsequent hot isostatic pressing. Fatigue crack propagation tests were carried out under load ratio from 0.1 to 0.5. Results show that the change in fatigue crack growth rates of harmonic structured SUS316L steels is insignificant even as grain size decreases. The load ratio has little influence on the fatigue crack growth rates for harmonic structured SUS316L steels compared to their coarse-grained counterparts. It is worth mentioning that fatigue crack growth is impeded by embedded coarse grains, which results in fatigue crack deflection and secondary cracks. The continuously network shell (UFG structure) provides increased tensile strength, enhancing the fatigue crack nucleation resistance. Simultaneously, the embedded core (CG structure) restrains crack growth. Therefore, the harmonic structure design is proposed to be an effective method to achieve good balance of high strength and high ductility as well as good fatigue resistance.
机译:已经提出了异质纳米甲基结构以实现前所未有的机械性能。本作研究的目的是研究谐波结构的疲劳裂纹生长行为在室温下设计奥氏体不锈钢。通过机械研磨和随后的热等静压产生谐波结构SUS316L钢。疲劳裂纹繁殖试验在载荷比下进行0.1至0.5。结果表明,随着晶粒尺寸降低,谐波结构SUS316L钢的疲劳裂纹扩展速率的变化也是微不足道的。与粗粒化对应物相比,负载比对谐波结构SUS316L钢的疲劳裂纹扩展速率几乎没有影响。值得一提的是,疲劳裂纹生长受到嵌入粗晶的影响,这导致疲劳裂纹偏转和二次裂缝。连续网络壳(UFG结构)提供增加的拉伸强度,增强疲劳裂纹成核性抗性。同时,嵌入的核心(CG结构)限制裂纹生长。因此,提出了谐波结构设计是实现高强度和高延展性的良好平衡的有效方法以及良好的疲劳性。

著录项

  • 来源
    《Materials Science and Engineering》 |2019年第5期|121-129|共9页
  • 作者单位

    Tianjin Univ Sch Chem Engn & Technol Tianjin 300350 Peoples R China|Nucl Power Inst China Sci & Technol Reactor Syst Design Technol Lab Chengdu 610213 Sichuan Peoples R China;

    Tianjin Univ Sch Chem Engn & Technol Tianjin 300350 Peoples R China;

    Tianjin Univ Sch Chem Engn & Technol Tianjin 300350 Peoples R China;

    Tianjin Univ Sch Chem Engn & Technol Tianjin 300350 Peoples R China;

    Nucl Power Inst China Sci & Technol Reactor Syst Design Technol Lab Chengdu 610213 Sichuan Peoples R China;

    Nucl Power Inst China Sci & Technol Reactor Syst Design Technol Lab Chengdu 610213 Sichuan Peoples R China;

    Beihang Univ Sch Mat Sci & Engn Minist Educ Key Lab Aerosp Adv Mat & Performance Beijing 100191 Peoples R China;

    Tianjin Univ Sch Chem Engn & Technol Tianjin 300350 Peoples R China;

    Ritsumeikan Univ Fac Sci & Engn Dept Mech Engn Kusatsu Shiga 5258577 Japan;

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

    Stainless steel; Harmonic structure; Grain refinement; Fatigue crack growth; Microstructure;

    机译:不锈钢;谐波结构;晶粒细化;疲劳裂纹增长;微观结构;

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