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Analysis and Design of Stabilizer Plates in Single-Plate Shear Connections

机译:单板剪力连接中稳定板的分析与设计

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摘要

Single-plate shear connections experience some magnitude of torsional moment, either due to the lateral torsional buckling phenomena or due to the effects of lap eccentricity. When the required torsional strength of the connection exceeds the available torsional strength of the connection, the designer has two options: alter the geometry of the connection to increase the torsional resistance of the connecting plate or provide stabilizer plates. Thornton and Fortney (2011) provide analysis techniques for accounting for the effects of lap eccentricity and lateral torsional buckling strength. Part 10 of the Manual (Steel Construction Manual, 14th ed., 2011) presents a summary of the equations used for such an evaluation. However, no discussion was provided by Thornton and Fortney with regard to the size and detailing of a stabilizer plate when such a plate is required. This paper presents recommendations for the analysis with regard to appropriate stabilizer plate cross-sectional dimensions and the attachment of the stabilizer plate to the connecting material and support. Three different types of stabilizer plates are presented along with recommendations for the design and detailing of the stabilizer plates; the impact that each type has on the design of the single-plate shear connection and the supporting column is presented as well.
机译:由于横向扭转屈曲现象或搭接偏心的影响,单板剪切连接承受一定程度的扭转力矩。当连接所需的扭转强度超过连接的可用扭转强度时,设计人员有两种选择:更改连接的几何形状以增加连接板的抗扭强度或提供稳定器板。 Thornton和Fortney(2011)提供了分析技术,以解决膝部偏心率和横向扭转屈曲强度的影响。手册的第10部分(钢结构手册,2011年第14版)概述了用于这种评估的方程式。然而,当需要这种稳定器板时,Thornton和Fortney没有讨论稳定器板的尺寸和细节。本文针对适当的稳定器板横截面尺寸以及稳定器板与连接材料和支撑的连接提出了分析建议。介绍了三种不同类型的稳定器板以及有关设计和详细说明稳定器板的建议;还介绍了每种类型对单板剪切连接和支撑柱设计的影响。

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