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Failure mode, fracture and fatigue analyses of resistance spot welds and spot friction welds.

机译:电阻点焊和点摩擦焊的失效模式,断裂和疲劳分析。

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摘要

Failure modes and fracture of resistance spot welds are investigated based on experimental observations and a mechanics approach. An elastic analysis indicates that the initial yielding starts on the two side edges of the nugget in the sheet.{09}An elastic plastic finite element analysis suggests that the initial necking failure occurs near the middle of the nugget circumference in the sheet as observed in experiments and as indicated by the forming limit diagram (FLD) for ductile sheet metals. Next, closed-form solutions of the mode I stress intensity factor for spot welds in lap-shear specimens are derived based on the classical Kirchhoff plate theory. Closed-form solutions for mode I, II, and III stress intensity factor solutions of spot welds in lap-shear specimens are suggested.; Failure modes of spot friction welds in lap-shear specimens of aluminum 6111-T4 sheets under quasi-static and cyclic loading conditions are also investigated. Optical and scanning electron micrographs of the welds before and after failure show that the microstructure, geometry, and the failure modes of the welds made by different tools are different. For the welds made by the concave tool under quasi-static loading conditions, the failure starts from the necking of the indented sheet outside the weld. Under cyclic loading conditions, the failure comes from the kinked fatigue crack growing in the non-indented sheet outside the stir zone. For the welds made by the flat tool under quasi-static loading conditions, the failure starts from cracking near the boundary of the stir zone close to the indented sheet surface inside the weld. Under low-cycle loading conditions, the failure comes from the kinked fatigue crack growing near the boundary of the stir zone inside the weld. Under high-cycle loading conditions, the failure comes from the kinked fatigue crack growing in the non-indented sheet outside the stir zone. Based on the experimental observations of the dominant fatigue cracks, a fatigue crack growth model is then adopted to estimate the fatigue lives of the spot friction welds.
机译:基于实验观察和力学方法研究了电阻点焊的失效模式和断裂。弹性分析表明,初始屈服始于板中熔核的两个侧边缘。{09}弹性塑性有限元分析表明,如在图2中观察到的那样,初始颈缩破坏发生在板中熔核圆周的中间附近。实验和延展性钣金的成形极限图(FLD)所示。接下来,基于经典的基尔霍夫板理论,得出搭接剪切试样中点焊的I型应力强度因子的闭式解。建议对搭接剪切试样中点焊的I,II和III型应力强度因子解采用闭式解。还研究了在准静态和循环载荷条件下,铝6111-T4搭接剪切试样中点摩擦焊的失效模式。焊缝失效前后的光学和扫描电子显微照片表明,用不同工具制成的焊缝的微观结构,几何形状和失效模式是不同的。对于由凹形工具在准静态载荷条件下进行的焊接,故障始于焊缝外部的压痕板缩颈。在循环载荷条件下,失效是由于在搅拌区以外的无凹痕的板材中产生的扭结疲劳裂纹。对于由扁平工具在准静态载荷条件下进行的焊缝,失效始于靠近焊缝内部凹痕薄板表面的搅拌区边界附近的裂纹。在低周期载荷条件下,失效是由于焊缝内部搅拌区边界附近的扭结疲劳裂纹扩展所致。在高循环载荷条件下,失效是由于在搅拌区外的无凹痕的板材中产生的扭结疲劳裂纹。基于对主要疲劳裂纹的实验观察,然后采用疲劳裂纹扩展模型估算点摩擦焊缝的疲劳寿命。

著录项

  • 作者

    Lin, Pai-Chen.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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