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A strain-gradient, crystal plasticity model for microstructure-sensitive fretting crack initiation in ferritic-pearlitic steel for flexible marine risers

机译:挠性海洋立管用铁素体-珠光体钢的微结构敏感性微动裂纹萌生的应变梯度晶体塑性模型

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摘要

A three-dimensional, strain-gradient, crystal plasticity methodology is presented for prediction of microstructure-sensitive length-scale effects in crack initiation, under fatigue and fretting fatigue conditions, for a ferritic-pearlitic steel used in flexible marine risers. The methodology, comprising length-scale dependent constitutive model and scale-consistent fatigue indicator parameters, is calibrated and validated for representative (measured) dual-phase microstructures under strain-controlled low cycle fatigue conditions. Prediction of the effects of length-scale on fretting crack initiation is based on a three-dimensional, crystal plasticity, frictional contact model to predict fretting crack location and initial growth path, accounting for the effects of crystallographic orientation. The length-scale dependent fatigue and fretting simulations predict (i) significant beneficial effect of reducing length-scale for low cycle fatigue life, (ii) complex cyclically- and spatially-varying effects and differences due to changing contact and grain length-scales, and (ii) that fretting damage generally decreases with decreasing (contact-grain) length-scale.
机译:提出了一种三维应变梯度晶体可塑性方法,用于预测挠性海洋立管中使用的铁素体-珠光体钢在疲劳和微动疲劳条件下在裂纹萌生中的微观结构敏感长度尺度效应。对该方法进行了校准和验证,该方法包括与长度尺度相关的本构模型和与尺度一致的疲劳指标参数,适用于在应变控制的低周疲劳条件下具有代表性(测量)的双相微结构。长度尺度对微动裂纹萌生的影响的预测基于三维晶体可塑性摩擦接触模型,以预测微动裂纹的位置和初始生长路径,并考虑了晶体学取向的影响。依赖于长度尺度的疲劳和微动磨损模拟预测(i)降低长度尺度以降低低周疲劳寿命的显着有益效果,(ii)复杂的循环和空间变化效应以及由于接触和晶粒长度尺度的变化而引起的差异, (ii)微动损伤通常随(接触晶粒)长度尺度的减小而减小。

著录项

  • 来源
    《International Journal of Fatigue》 |2018年第6期|81-92|共12页
  • 作者单位

    Mechanical Engineering, College of Engineering and Informatics, NUI Galway;

    Civil Engineering, College of Engineering and Informatics, NUI Galway,Ryan Institute for Environmental, Marine and Energy Research, NUI Galway;

    Mechanical Engineering, College of Engineering and Informatics, NUI Galway,Ryan Institute for Environmental, Marine and Energy Research, NUI Galway;

  • 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

    Crystal plasticity; Fretting; Strain-gradient; Length-scale effects; Crack initiation;

    机译:晶体可塑性;微动;应变梯度;长度尺度效应;裂纹萌生;

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