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Finite element analysis of beam-column T-joints of rectangular hollow steel sections strengthened using through-wall bolts

机译:穿墙螺栓加固矩形空心型钢截面梁柱T型节点的有限元分析

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A nonlinear finite element model is developed to analyze beam-column T-joints of Rectangular Hollow Sections (RHS) strengthened using through-wall bolts. The model was verified using experimental results for different beam depth-to-wall thickness (h/t) ratios and different bolts configurations and captured the full response and web buckling at the vicinity of the column quite well. The model was then used in a parametric study to investigate the effects of beam depth-to-width (h/b) ratio, span-to-depth (L/h) ratio, column breadth-to-beam depth (B/h) ratio, and welding the bolts to the webs, on the ultimate-to-plastic moment (M/M_p) ratio. As (L/h) increased from 4.9 to 7.9, (M/M_p) increased from 0.57 to 0.77 for the control joints and from 0.71 to 1.0 for the strengthened joints. Similarly, the limits of (h/b) and (B/h) at which strengthening allows the RHS beam to reach its full plastic moment are established. Welding the bolts to the beam walls enhanced ductility considerably with little increase in strength.
机译:建立了非线性有限元模型,以分析使用穿墙螺栓加固的矩形空心截面(RHS)的梁柱T型节点。使用不同的梁深度与壁厚(h / t)之比和不同的螺栓配置的实验结果验证了该模型,并很好地捕获了柱子附近的全响应和腹板屈曲。然后将该模型用于参数研究中,以研究光束深度与宽度(h / b)之比,跨度与深度(L / h)之比,柱宽与光束深度(B / h)的影响)比率,然后将螺栓焊接到腹板上,以极限塑性扭矩(M / M_p)比率进行。当(L / h)从4.9增加到7.9时,(M / M_p)对于控制关节从0.57增加到0.77,对于增强关节从(0.71)增加到1.0。类似地,建立了允许hhs束达到其完整塑性力矩的(h / b)和(B / h)极限。将螺栓焊接到梁壁上可大大提高延展性,而强度却很少增加。

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