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Experimental and numerical characterization of low cycle fatigue and creep fatigue behaviour of P92 steel welded joint

机译:P92钢焊接接头低周疲劳和蠕变疲劳行为的实验和数值表征

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摘要

Low cycle fatigue (LCF) and creep fatigue interaction (CFI) behaviour of P92 steel welded joint were investigated experimentally and numerically. Strain-controlled LCF tests at different strain amplitudes and CFI tests at different peak strain holding time were conducted. Evolutions of cyclic stress response, mean stress, and creep strain during cycling were described, in which the influence of strain amplitude and holding time were investigated. A specific heat treatment process was proposed to get the homogenous simulated material of fine grain region and coarse grain region in the heat affected zone. Material parameters of parent material, fine grain heat affected zone, coarse grain heat affected zone, and weld metal in the unified viscoplasticity model were then determined and validated. To predict the LCF and CFI behaviour of welded joint, 3-dimensional unified viscoplasticity model with a modified isotropic variable was compiled into ABAQUS UMAT. The comparison between the predicted and experimental result under LCF and CFI loadings showed that the simulation results were reasonable and agreed with the experimental data well.
机译:实验和数值研究了P92钢焊接接头的低周疲劳(LCF)和蠕变疲劳相互作用(CFI)行为。进行了在不同应变幅度下的应变控制LCF测试和在不同峰值应变保持时间下的CFI测试。描述了循环过程中循环应力响应,平均应力和蠕变应变的演变,并研究了应变幅度和保持时间的影响。提出了一种特殊的热处理工艺,以得到热影响区细晶粒区域和粗晶粒区域的均匀模拟材料。然后确定并验证了统一粘塑性模型中的母材,细晶粒热影响区,粗晶粒热影响区和焊缝金属的材料参数。为了预测焊接接头的LCF和CFI行为,将具有修正的各向同性变量的3维统一粘塑性模型编译为ABAQUS UMAT。在LCF和CFI载荷下的预测结果与实验结果的比较表明,模拟结果合理,与实验数据吻合良好。

著录项

  • 来源
  • 作者

    X. Wang; W.Zhang; J. Gong; Y.Jiang;

  • 作者单位

    School of Mechanical and Power Engineering, Nanjing Tech University, Nanjing 210000, China,Jiangsu Key Lab of Design and Manufacture of Extreme Pressure Equipment, Nanjing 210000, China,Department of Materials, Textiles and Chemical Engineering, Faculty of Engineering and Architecture, Ghent University, Technologiepark 903, Zwijnaarde B-9052, Belgium;

    School of Mechanical and Power Engineering, Nanjing Tech University, Nanjing 210000, China,Jiangsu Key Lab of Design and Manufacture of Extreme Pressure Equipment, Nanjing 210000, China;

    School of Mechanical and Power Engineering, Nanjing Tech University, Nanjing 210000, China,Jiangsu Key Lab of Design and Manufacture of Extreme Pressure Equipment, Nanjing 210000, China;

    School of Mechanical and Power Engineering, Nanjing Tech University, Nanjing 210000, China,Jiangsu Key Lab of Design and Manufacture of Extreme Pressure Equipment, Nanjing 210000, China;

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

    creep fatigue interaction; finite element method; low cycle fatigue; welded joint;

    机译:蠕变疲劳相互作用;有限元法低周疲劳;焊接接头;

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