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首页> 外文期刊>Journal of Constructional Steel Research >Shear buckling of plates and thin-walled channel sections with holes
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Shear buckling of plates and thin-walled channel sections with holes

机译:板和带孔的薄壁通道截面的剪切屈曲

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Thin-walled structural channel members are commonly manufactured with cut-outs to allow access for building services such as plumbing, electrical and heating systems in the walls and ceilings. The presence of holes in the members will cause changes in the stress distribution and there will be consequently changes in the buckling characteristic and ultimate strength capacity. Recent work by Pham and Hancock has provided solutions to determine the shear buckling load using the Spline Finite Strip Method (SFSM) for whole thin-walled channel sections without holes. In this paper, the same methodology is utilised to study and provide solutions to the elastic shear buckling firstly for the perforated square plates and subsequently for the whole thin-walled lipped channel sections with centrally located holes. Both circular and square holes with the same sizes and diameters were chosen for investigation. The main variables are the diameters of the circular holes and the sizes of the square holes. While there is only uniform pure shear applied throughout in square plates, three different cases for shear loading in the channel are considered to maintain longitudinal equilibrium. The method is also benchmarked against the Finite Element Method (FEM) using software package ABAQUS/Standard in all cases. Comparisons between hole shapes, loading cases and buckling modes of both square plates and channels are included. For design purposes, approximate equations for shear budding coefficients of square plate and channel section containing central circular and square holes are also proposed in this paper. Design example is also provided for design purposes. (C) 2016 Elsevier Ltd. All rights reserved.
机译:薄壁结构通道构件通常制造有切口,以允许进入建筑服务,例如墙壁和天花板中的管道,电气和加热系统。构件中存在孔会导致应力分布发生变化,因此屈曲特性和极限强度也会发生变化。 Pham和Hancock的最新工作提供了使用样条有限条法(SFSM)来确定整个无孔薄壁通道截面的剪切屈曲载荷的解决方案。在本文中,采用相同的方法来研究并为多孔方形板的弹性剪切屈曲提供解决方案,然后为具有中心孔的薄壁唇形通道的整个截面进行研究。选择具有相同尺寸和直径的圆形和方形孔进行研究。主要变量是圆孔的直径和方孔的大小。虽然在整个方形板中仅施加均匀的纯剪切力,但考虑通道中三种不同的剪切载荷情况以保持纵向平衡。在所有情况下,都使用ABAQUS / Standard软件包对照有限元方法(FEM)对该方法进行基准测试。包括对方形板和通道的孔形状,荷载工况和屈曲模式之间的比较。出于设计目的,本文还提出了包含中心圆孔和方孔的方形板和槽形截面的剪力发芽系数的近似方程。还出于设计目的提供了设计示例。 (C)2016 Elsevier Ltd.保留所有权利。

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