Reexamination of Shear Lag in HSS Tension Members with Side Gusset Plate Connections

Akashdeep A. Bhat, P. J. Fortney
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Abstract

This paper presents an evaluation of the shear lag factor for HSS tension members connected with two side plate gussets with longitudinal welds as given in AISC Specification Table D3.1, Case 6b. The current AISC Specification for Case 6b does not permit weld lengths less than the perpendicular distance between the welds, and has the potential of producing negative shear lag factors. Similar issues previously existed for members given in Case 4 of Table D3.1. However, the AISC Specification has adopted a mathematical model proposed by Fortney and Thornton for Case 4 of Table D3.1. The work presented in this paper offers: (1) a mathematical model for calculating the shear lag factor for Case 6b derived by repurposing the model adopted by AISC for Case 4 of Table D3.1; (2) the results of a parametric study comparing the results of the new mathematical model to the results using the current AISC method, and; (3) discusses the protocols developed for use in finite element analysis to evaluate the effectiveness of the proposed mathematical model. The proposed new mathematical model will permit longitudinal weld lengths less than the perpendicular distance between the welds, and removes the possibility of calculating a negative shear lag factor, while better representing the redistribution of cross-sectional stress near the connection region.
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带侧桁架板连接的高速钢拉伸构件中剪力滞后的再研究
本文对 AISC 规范表 D3.1(情况 6b)中给出的使用纵向焊缝连接两个侧板桁架的高速钢拉伸构件的剪力滞后因数进行了评估。目前 AISC 规范中的情况 6b 不允许焊缝长度小于焊缝之间的垂直距离,因此有可能产生负的剪切滞后因数。表 D3.1 案例 4 中的构件以前也存在类似问题。然而,AISC 规范采用了 Fortney 和 Thornton 针对表 D3.1 中情况 4 提出的数学模型。本文介绍的工作提供了(1) 通过重新利用 AISC 对表 D3.1 中例 4 采用的模型,得出计算例 6b 剪力滞后因数的数学模型;(2) 将新数学模型的结果与采用现行 AISC 方法的结果进行比较的参数研究结果;以及 (3) 讨论用于有限元分析的协议,以评估所提议数学模型的有效性。提议的新数学模型允许纵向焊缝长度小于焊缝之间的垂直距离,消除了计算负剪切滞后因数的可能性,同时更好地体现了连接区域附近横截面应力的重新分布。
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