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Numerical simulations on cold-formed steel channels with longitudinally stiffened slotted webs in shear

机译:纵向剪切开槽腹板冷弯型钢通道的数值模拟

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This paper presents results of a numerical finite element parametric study on elastic shear buckling and ultimate shear strength of cold-formed steel channels with longitudinally stiffened slotted webs. The following parameters were varied: channel height, thickness, flange width, flange lip length, longitudinal stiffener size, perforation pattern, aspect ratio, steel yield stress and boundary conditions. Channels with longitudinally stiffened solid webs subjected to shear load were also studied to provide reference data for comparison with the slotted channels. The parametric study described in this paper allowed us to develop equations for predicting the shear buckling coefficient of longitudinally web stiffened solid channels, as well as equations for predicting the elastic shear buckling load and the ultimate shear strength of channels with longitudinally stiffened slotted webs. The developed shear strength equations without and with tension field action are presented in the paper in the traditional and direct strength method formulations. The developed equations account for the studied parameters and showed good agreements with the finite element simulation results.
机译:本文介绍了有限元参数研究的结果,该研究对具有纵向加劲缝槽钢的冷弯型钢通道的弹性剪切屈曲和极限剪切强度进行了研究。更改了以下参数:通道高度,厚度,法兰宽度,法兰唇边长度,纵向加劲肋尺寸,穿孔方式,纵横比,钢屈服应力和边界条件。还研究了具有承受剪切载荷的纵向硬化实心腹板的通道,以提供与开槽通道比较的参考数据。本文中描述的参数研究使我们能够开发出用于预测纵向腹板加筋实心通道的剪切屈曲系数的方程,以及用于预测纵向拉长开槽腹板的通道的弹性剪切屈曲载荷和极限抗剪强度的方程。本文在传统和直接强度方法公式中介绍了已开发的不带和具有拉力场作用的抗剪强度方程。所开发的方程式解释了所研究的参数,并与有限元仿真结果显示出良好的一致性。

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