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Bearing strength of shear connections for tubular structures: An analytical approach

机译:管状结构抗剪连接的承载强度:一种分析方法

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This work deals with the prediction of the bearing resistance of elementary shear connections constituted by gusset plates and square hollow sections fastened with long bolts. The research is motivated by the lack of specific rules in international codes for this particular configuration. In fact, while in lap shear connections, single or double-sided, the holes are always confined out of plane, in case of connections with long bolts and gusset plates (typical of tubular structures), the holes are constrained out of plane outwards, but they are free to buckle inwards, providing a reduction of the bearing strength. Within this framework, the paper is aimed at the development of an analytical formulation for the prediction of the bearing resistance of connections with long bolts and square hollow sections (SHS). The proposal is based on the calculation of the post-buckling load of the tube plate subjected to bearing at the bolt hole, combining the Winter's formula (originally developed to predict the post-buckling strength of steel plates accounting for geometrical and mechanical imperfections) with a simplified FE model developed in SAP 2000. The procedure developed is presented in detail proposing a design equation for connections with long bolts, based on a formula suggested recently by Mote (2014, 2016) suitable for the inclusion in code provisions such as EC3. The accuracy of the design equation is checked on the experimental data reported in a previous work of the same authors properly extended with parametric FE simulations to cope for variation of geometrical parameters.
机译:这项工作涉及对由角撑板和用长螺栓固定的方形空心部分构成的基本剪力连接的承载力的预测。该研究的动机是缺乏针对此特定配置的国际法规中的特定规则。实际上,在单侧或双面搭接剪切连接中,孔始终限制在平面外,如果使用长螺栓和角撑板(通常为管状结构)连接,则孔向外限制在平面外,但它们可以向内自由弯曲,从而降低了轴承强度。在此框架内,本文旨在开发一种分析公式,以预测长螺栓和空心方形截面(SHS)的连接的轴承阻力。该建议是基于计算在螺栓孔处承受支承的管板的屈曲后载荷的基础上,结合了Winter公式(最初用于预测钢板的屈曲后强度,考虑了几何和机械缺陷)与SAP 2000中开发的简化FE模型。基于Mote(2014,2016)最近提出的适用于代码规定(例如EC3)的公式,详细介绍了开发的过程,提出了长螺栓连接的设计方程。设计方程的准确性是根据该作者先前工作中报告的实验数据进行检查的,该实验作者还适当扩展了参数有限元模拟以应对几何参数的变化。

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