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Computation of major axis shear deformations in wide flange steel girders and columns

机译:宽翼缘钢梁和圆柱的长轴剪切变形计算

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Shear deformations in the clear span region of wide flange girders and columns can often be responsible for a significant portion of the lateral flexibility of steel moment resisting frames. To include shear deformation in the analysis of such structures, the shear modulus of the material and the effective shear area of the various cross sections are required. The effective shear area is often defined in terms of a sectional form factor, kappa, which is equal to the total cross sectional area divided by the effective shear area. Structural engineering literature provides several formulas for computing the form factor for a variety of cross sectional shapes, including wide flange beams. When applying these formulas to sections in the AISC section database, however, it was found that the results varied considerably, particularly for jumbo sections. The purpose of the work reported in this paper was to determine which of the existing formulas is most accurate when applied to all sections in the database. A special virtual work based finite element analysis procedure was developed for this purpose. The results of the analysis indicate that a simple empirical formula for determining the form factor may be applied with sufficient accuracy in most situations. Because the analysis of rectangular sections provides insight into the wide flange beam problem, a detailed discussion of the computation of the form factor for rectangular sections is also provided.
机译:宽翼缘大梁和柱的净跨度区域中的剪切变形通常可能是钢制抗弯框架的侧向挠性的很大一部分。为了在这种结构的分析中包括剪切变形,需要材料的剪切模量和各个横截面的有效剪切面积。有效剪切面积通常根据截面形状系数kappa来定义,其等于总横截面积除以有效剪切面积。结构工程文献提供了几种公式,用于计算各种横截面形状(包括宽翼缘梁)的形状因数。但是,将这些公式应用于AISC剖面数据库中的剖面时,发现结果差异很大,尤其是对于巨型剖面。本文中报告的工作目的是确定将哪些现有公式应用于数据库中的所有部分时最为准确。为此,开发了一种基于虚拟工作的特殊有限元分析程序。分析结果表明,在大多数情况下,可以以足够的准确性应用确定形状因数的简单经验公式。由于对矩形截面的分析提供了对宽翼缘梁问题的深入了解,因此还提供了对矩形截面形状因数计算的详细讨论。

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