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首页> 外文期刊>Fatigue & fracture of engineering materials and structures >Fatigue fracture assessment of 10CrNi3MoV welded load-carrying cruciform joints considering mismatch effect
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Fatigue fracture assessment of 10CrNi3MoV welded load-carrying cruciform joints considering mismatch effect

机译:考虑错配效应,疲劳断裂评估10CrNi3Mov焊接载荷载体坩埚坩埚

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摘要

Fatigue experiments and numerical simulations based on the linear elastic fracture mechanics (LEFM) theory were conducted on the evenmatched (EM) and undermatched (UM) 10CrNi3MoV load-carrying cruciform welded joints (LCWJs). The study firstly experimentally investigated the fatigue crack growth rate (FCGR) of base metal, EM, and UM weldments. The corresponding Paris parameters as essential input data are provided to assess the fatigue crack propagation behavior for weld toe and weld root failure caused by notch stress concentration variations. On the one hand, the stress intensity factors (SIFs) at weld toe and weld root were calculated considering the effects of LCWJ specimen geometries, initial crack types, and sizes. The comparisons between simulated results and standards analytical solutions were executed, which exhibit good accordance. It proved that the fatigue fracture simulation procedure based on LEFM is appropriate for the fatigue assessment of LCWJs. Eventually, it conducted the parametric analysis by predicted S-N curves, which included in the weld length, initial crack shape, initial crack size, penetration length, and materials fracture parameter, to explore some safety assessment reference lines for both failure modes of LCWJ.
机译:基于线性弹性骨折力学(lefm)理论的疲劳实验和数值模拟在偶数(em)和支撑(um)10crni3mov承载十字形焊接接头(LCWJS)上进行。该研究首先通过实验研究了基础金属,EM和UM焊接的疲劳裂纹生长速率(FCGR)。提供相应的巴黎参数作为基本输入数据,以评估由凹口应力浓度变化引起的焊接脚趾和焊接根部失效的疲劳裂纹传播行为。一方面,考虑LCWJ标本几何形状,初始裂缝类型和尺寸的影响,计算焊接脚趾和焊接根的应力强度因子(SIF)。执行模拟结果与标准分析解决方案的比较,表现出良好。事实证明,基于铅值的疲劳断裂仿真程序适用于LCWJS的疲劳评估。最终,它通过预测的S-N曲线进行了参数分析,该方法包括在焊接长度,初始裂缝形状,初始裂缝尺寸,穿透长度和材料骨折参数中,以探索LCWJ的两个故障模式的一些安全评估参考线。

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  • 作者单位

    School of Mechanical & Electrical Engineering Xuzhou University of Technology Xuzhou China;

    State Key Laboratory of Advanced Welding and Joining Harbin Institute of Technology Harbin China;

    School of Materials Science and Physics China University of Mining and Technology Xuzhou China;

    School of Materials Science and Physics China University of Mining and Technology Xuzhou China;

    School of Mechanical & Electrical Engineering Xuzhou University of Technology Xuzhou China;

    School of Mechanical & Electrical Engineering Xuzhou University of Technology Xuzhou China;

    School of Mechanical & Electrical Engineering Xuzhou University of Technology Xuzhou China;

    Department of Mechanical and Industrial Engineering Norwegian University of Science and Technology (NTNU) Trondheim Norway;

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  • 正文语种 eng
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  • 关键词

    fracture mechanics theory; high cycle fatigue; load-carrying cruciform joints; mismatch effect;

    机译:裂缝力学理论;高循环疲劳;承载载荷的十字形接头;不匹配效果;

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