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首页> 外文期刊>International journal of steel structures >Fracture Prediction of Welded Steel Connections Using Traditional Fracture Mechanics and Calibrated Micromechanics Based Models
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Fracture Prediction of Welded Steel Connections Using Traditional Fracture Mechanics and Calibrated Micromechanics Based Models

机译:基于传统断裂力学和基于微力学校准的模型的焊接钢接头断裂预测

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摘要

Fracture resistance is of primary concern in the seismic design of beam-to-column connections in steel moment resisting frames (SMRFs). Micromechanics based fracture models such as the void growth model (VGM) and the stress modified critical strain (SMCS) model provide alternative approaches for ductile fracture prediction by relating micro-mechanisms of void nucleation, growth and coalescence to macroscopic stresses and strains. In this study, the VGM and SMCS models were calibrated for Q345 structural steel and the corresponding weld, through smooth notched tensile (SNT) tests and complementary continuum finite element models (FEMs). A series of seven local connections representing beam-to-column connections in SMRFs were tested under monotonic tensile loading and the specimen elongations at fracture critical point were obtained. The traditional J-integral based fracture mechanics and micromechanics based fracture models (VGM and SMCS) were applied to predict fracture in each tested local connection through refined three-dimensional FEM. Comparisons between these numerical approaches and experimental observations in prediction of fracture critical displacement, indicated that the VGM and SMCS models were able to predict fracture of welded connection with good accuracy, while the J-integral based approach resulted in quite conservative fracture prediction. This paper has bridged the gap between small-scale material tests and large-scale structural experiments in fracture evaluations.
机译:抗弯强度是抗弯矩框架(SMRF)中梁到柱连接的抗震设计中的主要问题。基于微力学的断裂模型,例如空隙增长模型(VGM)和应力修正临界应变(SMCS)模型,通过将空隙成核,生长和聚结的微观机制与宏观应力和应变相关联,为延性断裂预测提供了替代方法。在这项研究中,通过光滑缺口拉力(SNT)测试和互补连续有限元模型(FEM)对Q345结构钢和相应的焊缝校准了VGM和SMCS模型。在单调拉伸载荷下测试了代表SMRF中梁到柱连接的一系列七个局部连接,并获得了断裂临界点的试样伸长率。应用传统的基于J积分的断裂力学和基于微力学的断裂模型(VGM和SMCS),通过改进的三维有限元方法预测每个测试局部连接中的断裂。这些数值方法与实验观察值在预测断裂临界位移之间的比较表明,VGM和SMCS模型能够以较高的精度预测焊接连接的断裂,而基于J积分的方法则导致了相当保守的断裂预测。本文弥补了在断裂评估中进行小规模材料试验和大规模结构试验之间的差距。

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  • 来源
    《International journal of steel structures》 |2011年第3期|p.351-366|共16页
  • 作者单位

    Key Laboratory of Civil Engineering Safety and Durability of China Education Ministry,Department of Civil Engineering, Tsinghua University, Beijing, 100084, China;

    Key Laboratory of Civil Engineering Safety and Durability of China Education Ministry,Department of Civil Engineering, Tsinghua University, Beijing, 100084, China;

    Key Laboratory of Civil Engineering Safety and Durability of China Education Ministry,Department of Civil Engineering, Tsinghua University, Beijing, 100084, China;

    Key Laboratory of Civil Engineering Safety and Durability of China Education Ministry,Department of Civil Engineering, Tsinghua University, Beijing, 100084, China;

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

    steel connection; micromechanics based models; fracture mechanics; j-integral; fracture prediction;

    机译:钢连接;基于微力学的模型;断裂力学j积分断裂预测;

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