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Numerical simulation of distortion-induced fatigue crack growth using extended finite element method

机译:延长有限元法测定变形诱导疲劳裂纹生长的数值模拟

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摘要

Aiming to investigate the propagation behaviour of distortion-induced fatigue cracks in steel bridge web gaps, multi-scale numerical analysis models were built based on fracture mechanics theory and extended finite element method (XFEM), combining with the full-scale fatigue tests data. Propagation behaviours of representative fatigue cracks in vertical stiffener web gaps and horizontal gusset plate web gaps were analysed. Finite element models of welds connecting web, vertical stiffener and horizontal gusset plate were built, and the welding residual stresses of such details were analysed. Significant transverse welding residual tensile stresses exist at stiffener web weld toes for web gap details. Residual stress measurements were conducted, and the crack shape and the propagation direction path were basically the same with that in the numerical simulation, indicating that the numerical simulation results were relatively reliable. Furthermore, the welding residual stress fields were considered in the crack propagation analysis models. Representative fatigue cracks at web gaps are Mode I leading mixed-mode cracks of Modes I, II and III. Crack propagation considering welding residual stress has faster propagation rate and is more consistent with fatigue test results. The welding residual stress cannot be ignored for analysis and assessment of distortion-induced fatigue cracks in steel bridges.
机译:旨在探讨钢桥网隙中失真诱导疲劳裂缝的传播行为,基于断裂力学理论和扩展有限元方法(XFEM)建立了多尺度数值分析模型,与全规模疲劳测试数据相结合。分析了垂直加强纤维网间隙中代表性疲劳裂缝的传播行为和水平角撑板幅间隙。建造了连接网,垂直加强件和水平角撑板的焊缝有限元模型,分析了这些细节的焊接残余应力。对于Web间隙细节,在加强纤维网焊接脚趾上存在显着的横向焊接残余拉伸应力。进行残余应力测量,并且裂缝形状和传播方向路径基本相同,在数值模拟中,表明数值模拟结果相对可靠。此外,在裂纹传播分析模型中考虑了焊接残余应力场。网间隙的代表性疲劳裂缝是MODE I,II和III的MODE MIDIES I II,II和III的混合模式裂缝。考虑焊接残留应激的裂纹传播具有更快的传播速率,并且与疲劳测试结果更加一致。用于分析和评估钢结构中的变形诱导的疲劳裂缝的分析和评估不能忽略焊接残余应力。

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