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Three-dimensional fatigue crack propagation simulation using extended finite element methods for steel grades S355 and S690 considering mean stress effects

机译:考虑到平均应力效应,使用钢等级S355和S690扩展有限元方法的三维疲劳裂纹传播仿真

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The assessment of fatigue crack propagation of steel structures is essential and important especially to improve the application of high strength steel in construction. The load ratio R, reflecting mean stress effects, will be changed with crack extension in the steel structures with complicated geometry. In this paper, the Walker equation is employed to fit the fatigue crack propagation rate of steel grades S355 and S690 based on experimental data in the literature to incorporate the mean stress effects. The material fatigue crack propagation parameters with 95%, 97.7%, and 99% guarantee of Walker equation were obtained by a stochastic analysis using the Monte Carlo method. The fatigue life was firstly predicted by the analytical method and was used as a baseline for numerical fatigue crack propagation simulation. A user-defined fatigue crack propagation subroutine based on the Walker equation was developed using phantom nodes-based extended finite element method (PN-XFEM) and Virtual Crack Closure Technique (VCCT) to consider the mean stress effects. The proposed three-dimensional fatigue crack propagation simulation subroutine is successfully validated of both steel grades, S355 and S690.
机译:钢结构疲劳裂纹扩展的评估至关重要,特别是改善高强度钢在施工中的应用。反映平均应力效应的负荷比率R将在钢结构中的裂缝延伸,具有复杂的几何形状。本文基于文献中的实验数据,采用步行式方程来符合钢等级S355和S690的疲劳裂纹传播速率,以掺入平均应力效应。通过使用Monte Carlo方法的随机分析,通过随机分析获得了95%,97.7%和99%的步行方程保证的材料疲劳裂纹传播参数。首先通过分析方法预测疲劳寿命,并用作数值疲劳裂纹繁殖模拟的基线。使用基于Phantom节点的扩展有限元方法(PN-XFEM)和虚拟裂缝闭合技术(VCCT),开发了一种基于Walker方程的用户定义的疲劳裂纹传播子程序,以及虚拟裂缝关闭技术(VCCT),以考虑平均应力效应。所提出的三维疲劳裂纹传播仿真子程序被成功验证了钢等级,S355和S690。

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