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Behavior and design of steel I-beams with inclined stiffeners

机译:倾斜加劲肋钢工字钢的性能与设计

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This paper presents an investigation of the effect of inclined stiffeners on the load-carrying capacity of simply-supported hot-rolled steel I-beams under various load conditions. The study is carried out using finite element analysis. A series of beams modeled using 3-D solid finite elements with consideration of initial geometric imperfections, residual stresses, and material nonlinearity are analyzed with and without inclined stiffeners to show how the application of inclined stiffeners can offer a noticeable increase in their lateral-torsional buckling (LTB) capacity. The analysis results have shown that the amount of increase in LTB capacity is primarily dependent on the location of the inclined stiffeners and the lateral unsupported length of the beam. The width, thickness and inclination angle of the stiffeners do not have as much an effect on the beam's lateral-torsional buckling capacity when compared to the stiffeners' location and beam length. Once the optimal location for the stiffeners is determined, parametric studies are performed for different beam lengths and load cases and a design equation is developed for the design of such stiffeners. A design example is given to demonstrate how the proposed equation can be used for the design of inclined stiffeners not only to enhance the beam's bearing capacity but its lateral-torsional buckling strength.
机译:本文研究了倾斜加劲肋在各种载荷条件下对简支热轧钢工字钢的承载能力的影响。该研究是使用有限元分析进行的。考虑到初始几何缺陷,残余应力和材料非线性,使用3-D固体有限元建模的一系列梁在有和没有倾斜加强筋的情况下进行了分析,以显示倾斜加强筋的应用如何显着增加其横向扭转屈曲(LTB)容量。分析结果表明,LTB容量的增加主要取决于倾斜的加劲肋的位置和横梁的横向无支撑长度。与加劲肋的位置和横梁长度相比,加劲肋的宽度,厚度和倾斜角度对梁的横向扭转屈曲能力影响不大。一旦确定了加劲肋的最佳位置,就针对不同的梁长度和载荷工况进行参数研究,并为此类加劲肋的设计制定设计方程。给出了一个设计实例,以说明所提出的方程式如何用于倾斜加劲肋的设计,不仅可以提高梁的承载能力,而且可以提高梁的横向扭转屈曲强度。

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