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Numerical Simulation and Effect of Curling on Bolted Connections in Cold-formed Stainless Steel

机译:弯曲对冷弯不锈钢螺栓连接的影响及其数值模拟

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Finite element (FE) model with three-dimensional solid elements is established for investigating the structural performance of bolted connections loaded in static shear with cold-formed stainless steel (austenitic steel; SUS304) plate, based on the existing test data performed by Kuwamura et al, for calibration. From the experimental results, modifications of current Japanese steel design standards for calculating the ultimate strength to account for the mechanical properties of stainless steel and thin-walled steel plates were made. However, curling, i.e., out of plane deformation in connection plate ends with a long edge distance was observed, and led to the strength reduction of bolted connections. In this study, non-linear material and non-geometric analysis are carried out in order to predict the load-displacement curves of bolted connections. Therefore, finite element analysis results are compared with previous experimental results, failure modes and ultimate strengths predicted by recommended procedures of FE method show a good agreement with those of experimental results and it can be also found that curling which occurred in test specimens is also observed in FE model. Failure criterion, which predicts failure mode of bolted connections and curling criterion are proposed considering the stress distribution at the region where initial crack may occur. In addition, influence of curling on the strength reduction is estimated quantitatively and change of in-plane stress of connection plate is investigated according to the advancement of curling.
机译:基于Kuwamura等人进行的现有测试数据,建立了具有三维实体元素的有限元(FE)模型,以研究冷弯不锈钢(奥氏体钢; SUS304)板在静剪力作用下的螺栓连接的结构性能。 al,用于校准。根据实验结果,对现行的日本钢设计标准进行了修改,以计算极限强度,以考虑不锈钢和薄壁钢板的机械性能。然而,观察到卷曲,即,在连接板端部具有较长的边缘距离的平面外变形,并且导致螺栓连接的强度降低。在这项研究中,进行非线性材料和非几何分析,以预测螺栓连接的载荷-位移曲线。因此,将有限元分析结果与先前的实验结果进行比较,通过有限元方法的推荐程序预测的破坏模式和极限强度与实验结果相吻合,并且还发现在试样中也观察到了卷曲。在有限元模型中。考虑到初始裂纹可能发生区域的应力分布,提出了预测螺栓连接失效模式的失效准则和卷曲准则。另外,定量地估计了卷曲对强度降低的影响,并且根据卷曲的进展来研究连接板的面内应力的变化。

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