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Analysis and design for the resilience of shear connections

机译:剪力连接的弹性分析与设计

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This paper proposes an approach for quantifying the demands on shear connections under the assumption of an ineffective column. Formulas and an algorithm are developed to evaluate the axial force, axial deformation, rotation, and moment demands on beam-to-column shear connections. The analysis algorithm developed is verified using a solved example found from literature. Parametric studies are conducted to determine important parameters in the connection modeling for resilience design. Furthermore, a detailed procedure indicating how to obtain the properties of an end-plate shear connection for its resilience design is provided. Four end-plate connection examples are employed to illustrate the proposed methodology. Finally, a capacity design concept is introduced for the ductility design of shear connections. This study demonstrates that shear connections should be designed explicitly for its resilience to resist progressive collapse of a girder-and-beam system.
机译:本文提出了一种在无效柱的假设下量化对剪力连接的要求的方法。开发了公式和算法来评估梁到柱剪切连接上的轴向力,轴向变形,旋转和力矩需求。使用从文献中找到的已解决示例验证了开发的分析算法。进行参数研究以确定弹性设计的连接建模中的重要参数。此外,提供了详细的过程,指示如何获得端板剪切连接的弹性设计特性。四个端板连接示例用于说明所提出的方法。最后,为剪切连接的延性设计引入了一种容量设计概念。这项研究表明,应明确设计抗剪连接,以使其具有抵抗梁和梁系统逐渐倒塌的弹性。

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