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Parametric finite element study of slotted end connections to circular hollow sections

机译:开槽端部与圆形空心截面的参数化有限元研究

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The influence that the shear lag phenomenon may have on the strength of tubular connections has been addressed in design provisions with variable efficiency factors that affect the tube net area. However, an experimental program carried out on gusset plate connections to the ends of circular hollow section (CHS) members has indicated that these provisions may be overly conservative. As part of the experimental program, a total of eight specimens was tested under quasi-static tension and compression loading considering three connection types frequently used in practice. Moreover, results of a parametric analysis undertaken based on finite element models of these connections (where the responses were verified with the test results) showed considerable differences between the calculated connection strength and the predicted capacity by design provisions. In the finite element analysis, a nonlinear time step analysis was performed considering nonlinear material properties and 8-noded solid elements were used throughout the modeling. The gradual propagation of cracks in the material was emulated by definition of a maximum equivalent strain as the failure criterion with the activation of a "death feature" of the elements. The influence of parameters such as: the weld length (L_w), a proposal to use the eccentricity reduced by half the flange-plate thickness (x′) and the tube diameter-to-thickness (D/t) ratio have been studied. The analysis results have shown that a gradual transition between several failure modes takes place as the weld length increases. Also, the likelihood of developing the full efficiency of the tube net cross-sectional area, if a minimum ratio of L_w/w = 1.0 is used, is illustrated.
机译:剪力滞后现象可能对管状连接强度产生的影响已在设计规定中解决,其设计效率系数会影响管子的净面积。但是,在连接至圆形空心型材(CHS)构件端部的角撑板板上进行的实验程序表明,这些规定可能过于保守。作为实验程序的一部分,考虑了实践中经常使用的三种连接类型,总共在准静态拉伸和压缩载荷下测试了八个样本。此外,基于这些连接的有限元模型进行的参数分析结果(其中的响应已通过测试结果验证)表明,计算的连接强度与设计规定的预测容量之间存在相当大的差异。在有限元分析中,考虑了非线性材料特性进行了非线性时间步长分析,并且在整个建模过程中使用了8节点实体元素。通过将最大等效应变定义为失效准则,并激活元素的“死亡特征”,可以模拟材料中裂纹的逐渐传播。研究了以下参数的影响:焊接长度(L_w),使用偏心率减小法兰板厚度(x')一半和管直径与厚度(D / t)之比的建议。分析结果表明,随着焊接长度的增加,几种失效模式之间会逐渐过渡。而且,示出了如果使用最小比率L_w / w = 1.0,则开发管网截面积的全部效率的可能性。

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