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Numerical simulations on cold-formed steel channels with flat slotted webs in shear. Part II: Ultimate shear strength

机译:剪切状态下带有平开缝腹板的冷弯型钢通道的数值模拟。第二部分:极限剪切强度

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This paper presents results of a numerical parametric study on the ultimate shear strength of cold-formed steel channels with flat slotted webs. The study was performed on nonlinear finite element models developed in ANSYS and validated against test data. The effects of perforation pattern, channel flange width, flange lip length, steel yield stress, and aspect ratio on the ultimate shear strength of the channels were numerically investigated on the models with realistic and test setup boundary conditions. Equations for predicting the shear strength of channels with flat slotted webs were developed. The equations account for the effects of the studied parameters on the shear strength of the channels and showed a good agreement with the finite element analysis results when post-buckling shear strength due to tension field action was taken into account.
机译:本文介绍了数值模拟研究的结果,该研究针对具有平缝隙腹板的冷弯型钢通道的极限抗剪强度。该研究是在ANSYS中开发的非线性有限元模型上进行的,并针对测试数据进行了验证。在具有实际和测试设置边界条件的模型上,数值研究了穿孔方式,通道法兰宽度,法兰唇边长度,钢屈服应力和长宽比对通道最终抗剪强度的影响。建立了用于预测平开缝网槽抗剪强度的方程。该方程考虑了所研究参数对通道抗剪强度的影响,并考虑了拉力场作用引起的屈曲后抗剪强度,与有限元分析结果显示出良好的一致性。

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