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Fatigue performance analysis and experimental study of steel trusses integral joint based on multi-scale FEM

机译:基于多尺度有限元的钢桁架整体节点疲劳性能分析与试验研究

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摘要

The fatigue performance of steel truss integral joint is analyzed based on multi-scale FEM. Numerical results are verified with experimental ones. The fatigue performance of steel truss integral joint is analyzed using a sea-crossing suspension bridge as its background. The 1:2 scale model fatigue test is taken. After 2e6 time load loops, the stress situation of integral joint is stable and fatigue performance is satisfactory for requirements. The multi-scale FEM, whose main researching part adopts three-dimensional elements while the connecting component adopts the common beam element, can reduce the computational cost. The  connection elements are used to connect the beam elements and  threedimensional elements. The connection element has two joints, one of which has six degrees of freedom, three translation degrees of freedom  and three rotational degrees of freedom, all degrees of freedom being  coupled. The multi-scale FEM and the experimental one yield very close results The multi-scale FEM can provide an accurate simulation of the main research part and ensure the fatigue life forecast so as to simplify the calculation. This method is high efficient and feasible. The multi-scale FEM provides a new and reliable method for the fatigue performance of structure analysis.
机译:基于多尺度有限元分析,分析了钢桁架整体节点的疲劳性能。数值结果通过实验验证。以某跨海悬索桥为背景,分析了钢桁架整体节点的疲劳性能。进行了1:2比例模型疲劳测试。经过2e6次负载循环后,整体接头的应力状况稳定,疲劳性能满足要求。多尺度有限元法的主要研究部分采用三维单元,而连接组件采用公共梁单元,可以降低计算成本。连接元件用于连接梁元件和三维元件。该连接元件具有两个关节,其中之一具有六个自由度,三个平移自由度和三个旋转自由度,所有自由度都被耦合。多尺度有限元和实验结果非常接近。多尺度有限元可以为主要研究部分提供准确的模拟,并保证疲劳寿命预测,从而简化计算。该方法高效可行。多尺度有限元分析为结构分析的疲劳性能提供了一种新的可靠方法。

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