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首页> 外文期刊>International Journal of Fatigue >Notch energy-based low and high cycle fatigue assessment of load-carrying cruciform welded joints considering the strength mismatch
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Notch energy-based low and high cycle fatigue assessment of load-carrying cruciform welded joints considering the strength mismatch

机译:考虑力不匹配,缺口能量基于载荷坩埚焊接接头的低循环疲劳评估

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摘要

This study examines the Low and High Cycle Fatigue failure (LCF and HCF) of Load-carrying Cruciform Welded Joints (LCWJ) made of 10CrNi3MoV steel through a combined investigation of experimental, simulation, and analytical methods. LCF and HCF tests were conducted on LCWJ specimens with various weldment strength matching conditions and geometric configurations. Different fatigue failure modes can be observed from potential fracture points due to the discrepancy of strength and geometry in weldments, which exhibits the discrepancy of fatigue life. New uniform energy analytical formulations for Weld Toe (WT) and Weld Root (WR) are established to predict the LCF and HCF indicator of LCWJ considering the plasticity and mechanical heterogeneity effects of the weldments based on the generalized Neuber concept of Fictitious Notch Rounding (FNR). Furthermore, an effective notch energy indicator is introduced and implemented to evaluate fatigue behaviors of welded components in both LCF and HCF regimes. According to the proposed analytical solutions, experimental data from WT and WR failure under force and displacement-controlled cyclic loadings are evaluated and verified. The results show that the notch-energy indicator can express the unique relationship with fatigue life regardless of the strength mismatch ratios and geometry discrepancy.
机译:本研究通过对实验,仿真和分析方法的组合调查,检查由10crni3mov钢的承载十字架焊接接头(LCWJ)的低循环疲劳失效(LCF和HCF)。 LCF和HCF测试在LCWJ标本上进行,具有各种焊接强度匹配条件和几何配置。由于焊接中的强度和几何形状的差异,可以从潜在的断裂点观察不同的疲劳失效模式,这呈现疲劳寿命的差异。建立新的均匀能量分析配方和焊接根(WR),以预测LCWJ的LCF和HCF指示器,考虑到基于焊接的塑性和机械异质性效应基于虚构的凹口圆角的广义新组织(FNR )。此外,引入并实施了有效的凹口能量指示器,以评估LCF和HCF制度中焊接部件的疲劳行为。根据所提出的分析解决方案,评估和验证来自WT和WR失效的实验数据,并进行了验证。结果表明,凹口 - 能量指示器可以表达与疲劳寿命的独特关系,无论强度不匹配比率和几何形状差异。

著录项

  • 来源
    《International Journal of Fatigue》 |2021年第10期|106410.1-106410.18|共18页
  • 作者单位

    School of Mechanical & Electrical Engineering Xuzhou University of Technology Xuzhou 221118 China;

    State Key Laboratory of Advanced Welding and Joining Harbin Institute of Technology Harbin 150001 China;

    College of Mechanical Engineering and Automation Huaqino University Xiamen 361021 China;

    Xuzhou XCMG Mining Machinery Company Xuzhou 221000 China;

    School of Mechanical & Electrical Engineering Xuzhou University of Technology Xuzhou 221118 China;

    School of Mechanical & Electrical Engineering Xuzhou University of Technology Xuzhou 221118 China;

    Department of Mechanical and Industrial Engineering Norwegian University of Science and Technology (NTNU) Richard Birkelands vei 2b 7491 Trondheim Norway;

  • 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

    Load-carrying cruciform welded joint; Low and high cycle fatigue; Material heterogeneity; Failure modes; Notch energy;

    机译:承载载体坩埚焊接接头;低循环疲劳;材料异质性;失败模式;陷波能量;

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