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A physically-based method for predicting high temperature fatigue crack initiation in P91 welded steel

机译:一种基于物理基于P91焊接钢高温疲劳裂纹启动的方法

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摘要

A methodology is presented for physically-based prediction of high temperature fatigue crack initiation in 9Cr steels, with a focus on material inhomogeneity due to welding-induced metallurgical transformations. A modified form of the Tanaka-Mura model for slip band formation under cyclically-softening conditions is implemented in conjunction with a physically-based unified cyclic viscoplasticity constitutive model. The physically-based constitutive model accounts for the key strengthening mechanisms, including precipitate hardening and hierarchical grain boundary strengthening, successfully predicting cyclic softening in 9Cr steels. A five-material, finite element model of a P91 cross-weld test specimen, calibrated using the physically-based yield strength and constitutive models, successfully predicts the measured detrimental effect of welding on high temperature low-cycle fatigue crack initiation for P91 cross weld tests, via the modified Tanaka-Mura model. A key finding of the current work is the requirement to adopt an energy-based Tanaka-Mura method to account for cyclic softening in 9Cr steels, with packet size as the critical length-scale for slip band formation. The work demonstrates the significant effect of highly flexible operation on the service life of welded connections.
机译:提出了一种用于物理基于基于9CR钢的高温疲劳裂纹引发的方法,其侧重于焊接诱导的冶金转化引起的材料不均匀性。在循环软化条件下,在循环软化条件下为滑动带形成的Tanaka-Mura模型的修改形式与物理基础的统一环状粘合性构成型模型一起实现。基于物理的本构模型占关键强化机制,包括沉淀硬化和分层晶界强化,成功预测9CR钢中的循环软化。 P91跨焊接试样的五种有限元模型,使用基于物理的屈服强度和本构模型进行校准,成功地预测了焊接对P91交叉焊接的高温低循环疲劳裂纹启动的测量不利影响通过修改的Tanaka-Mura模型进行测试。目前工作的一个关键发现是需要采用基于能源的Tanaka-Mura方法来解释9CR钢中的循环软化,其具有包尺寸作为滑动带形成的临界长度级。该作品展示了高度灵活运行对焊接连接的使用寿命的显着影响。

著录项

  • 来源
    《International Journal of Fatigue》 |2021年第12期|106480.1-106480.15|共15页
  • 作者单位

    Mechanical Engineering College of Engineering and Informatics NUI Galway University Rd Galway Ireland Ryan Institute for Environmental Marine and Energy Research NUI Galway University Rd Galway Ireland I-Form the SFI Research Centre for Advanced Manufacturing Ireland;

    Mechanical Engineering College of Engineering and Informatics NUI Galway University Rd Galway Ireland Ryan Institute for Environmental Marine and Energy Research NUI Galway University Rd Galway Ireland I-Form the SFI Research Centre for Advanced Manufacturing Ireland;

    Mechanical Engineering College of Engineering and Informatics NUI Galway University Rd Galway Ireland Ryan Institute for Environmental Marine and Energy Research NUI Galway University Rd Galway Ireland I-Form the SFI Research Centre for Advanced Manufacturing Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Crack initiation; High temperature fatigue; Microstructure; P91 steel; Weldments;

    机译:开采;高温疲劳;微观结构;P91钢;焊接;

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