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Mechanism of crack initiation under high cycle fatigue through an EBSD based approach in a 10 wt% Cr steel

机译:基于EBSD基于10wt%Cr钢的EBSD方法在高循环疲劳下裂纹启动机理

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摘要

The study presents an insight into the mechanism of crack initiation under high cycle fatigue (HCF) and estimation of the initiation life thereof, using electron backscatter diffraction (EBSD) as an important tool in a 10% Cr ferritic steel. The localized plastic deformation facilitating crack initiation under HCF is found to be associated with dislocation multiplication and localized cyclic hardening. This process is found to occur concomitantly with the substructural development through the localized deformation leading to formation of new subgrains which act as barriers to the dislocation motion. The subgrain strengthening that arises as a consequence, adds to the local internal stress through dislocation pile-ups, aiding the process of crack initiation. The local internal stress is computed using the average subgrain size, which in turn is used to estimate the critical length required for the crack to self-propagate under the applied HCF stress, applying the principle of fracture mechanics. This concept is also utilized to identify the crack propagation threshold demarcating the regimes of propagating and non-propagating cracks.
机译:该研究介绍了在高循环疲劳(HCF)下裂纹启动机理的洞察,并使用电子反向散射衍射(EBSD)作为10%Cr铁素体钢中的重要工具。发现促进HCF下裂纹引发的局部塑性变形与位错倍增和局部循环硬化相关联。发现该过程伴随着通过局部变形的子结构发展,导致形成新的亚草,这充当偏离运动的障碍。因此,出现的粒子强化通过位错桩增加了局部内部压力,促使裂纹启动过程。使用平均子粒尺寸计算局部内应力,这反过来又用于估计在应用的HCF应力下裂缝到自我传播所需的临界长度,适用骨折力学原理。该概念还用于识别划分传播和非繁殖裂缝的规定的裂缝传播阈值。

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  • 来源
    《Materials Science and Engineering》 |2020年第23期|139940.1-139940.9|共9页
  • 作者单位

    Metallurgy and Materials Croup Indira Gandhi Centre for Atomic Research Kalpakkam Tamil Nadu India;

    Department of Metallurgical Engineering Indian Institute of Technology (BHU) Varanasi Varanasi 221 005 Uttar Pradesh India;

    Metallurgy and Materials Croup Indira Gandhi Centre for Atomic Research Kalpakkam Tamil Nadu India;

    Metallurgy and Materials Croup Indira Gandhi Centre for Atomic Research Kalpakkam Tamil Nadu India;

    Materials Science Group Indira Gandhi Centre for Atomic Research Kalpakkam Tamil Nadu India;

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

    HCF; Fatigue crack; EBSD; Dislocations; 10 wt Cr-steel;

    机译:HCF;疲劳裂缝;EBSD;脱臼;10%wt%Cr钢;

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