首页> 外文会议>International Conference on Steel, Space amp; Composite Structures; 20071010-12, 14-15; Yantai, Beijing(CN) >RESEARCH ON THE ULTIMATE BEARING CAPACITY OF PLANAR STEEL FRAME STRUCTURES USING ANSYS
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RESEARCH ON THE ULTIMATE BEARING CAPACITY OF PLANAR STEEL FRAME STRUCTURES USING ANSYS

机译:基于ANSYS的平面钢框架极限承载力研究。

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摘要

Application of advanced analysis methods suitable for non-linear analysis and design of steel frame structures permits direct and accurate determination of ultimate bearing capacity of frames, without resorting to simplified elastic methods of analysis and semi-empirical specification equations. A research has been conducted with the aim of applying Beam189 element in ANSYS to practical advanced analysis of planar steel frame structures comprising compact Ⅰ-sections. Considering residual stresses with the program CRSTRESS and initial geometric imperfections, the ultimate bearing capacity of planar steel frame structures was studied. Maximum strength capacities and load-displacement curves predicted by the proposed analysis compared well with the analytical benchmark solutions given by other approaches. The study indicates that for second-order inelastic analysis of typical singlestorey and multi-storey steel frame structures comprising compact Ⅰ-sections. For typical planar single-storey steel frame structures, the model can obtain the fine results using few elements to model one beam or column, but for multi-storey steel frame structures, more elements are needed.
机译:适用于钢框架结构非线性分析和设计的高级分析方法可以直接而准确地确定框架的极限承载力,而无需借助简化的弹性分析方法和半经验式方程。旨在将ANSYS中的Beam189元素应用于对包含紧凑Ⅰ型截面的平面钢框架结构进行实际的高级分析的研究已经进行。考虑CRSTRESS程序的残余应力和初始几何缺陷,研究了平面钢框架结构的极限承载力。所提出的分析预测的最大强度能力和载荷-位移曲线与其他方法给出的分析基准解决方案进行了很好的比较。研究表明,对于典型的单层和多层紧凑型Ⅰ型钢框架结构的二阶非弹性分析。对于典型的平面单层钢框架结构,使用很少的元素来对一个梁或柱进行建模,该模型可以获得良好的结果,但是对于多层钢框架结构,则需要更多的元素。

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