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An Efficient Computational Method for Semi-rigid Steel Frame with Elements of Internal Plastic Hinge

机译:带有内部塑料铰链元件的半刚性钢框架的有效计算方法

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This paper proposes an efficient computational method for semi-rigid steel frame with elements of internal plastic hinge. The yield function of I or H section is derived by using section assemblage concept, and residual stress is considered in the initial yield function. Element with springs-in-series at each end is presented to consider the effect of semi-rigid connections and material nonlinearity. Based on the proposed method, it is demonstrated that internal plastic hinge can be well predicted by only using one element for the members subjected to distributed loads. The proposed element has the same nodal degrees of freedom as conventional element by condensing the non-nodal degrees of freedom introduced in the derivation. Other factors influencing the capacity of steel frames, such as shear deformation, geometric nonlinearity and initial imperfection, are explicated. Using FORTRAN, an improved nonlinear analysis program of semi-rigid steel frame is compiled. Numerical analysis shows that the proposed method has high efficiency and accuracy.
机译:本文提出了一种采用内部塑料铰链的半刚性钢框架的有效计算方法。 I或H截面的屈服函数是通过截面组合的概念推导得到的,在初始屈服函数中考虑了残余应力。提出了在每端都带有串联弹簧的单元,以考虑半刚性连接和材料非线性的影响。基于所提出的方法,证明了内部塑料铰链可以通过仅对受分配载荷的构件使用一个元素就可以很好地预测。通过压缩在推导中引入的非节点自由度,所提出的元件具有与常规元件相同的节点自由度。阐述了影响钢框架承载力的其他因素,例如剪切变形,几何非线性和初始缺陷。利用FORTRAN,编写了一种改进的半刚性钢框架非线性分析程序。数值分析表明,该方法具有较高的效率和准确性。

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