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Stiffness Prediction of Connections between CHS Tubes and Externally Welded I-Beams: FE Analyses and Analytical Study

机译:CHS管与外部焊接I梁之间连接的刚度预测:Fe分析和分析研究

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摘要

Double-tee profiles are the most popular members in Europe and the USA for steel structures. However, more efficient cross-sections, such as circular hollow sections (CHSs), could be adopted, since they can provide higher aesthetic, economic and mechanical benefits, with the only drawback of more complex connections such as in the case of I-beams welded to the external surface of circular hollow profiles. Based on the ring model theory, developed by Togo, a rule to design the flexural resistance of such a connection has been included in the Eurocode 3 part 1.8, while no formulations are provided to predict the corresponding initial stiffness. The present work aims at filling this knowledge gap, adopting an approach based on experimental, numerical and analytical work. A monotonic and a cyclic test have been performed on two beam-to-column sub-assemblies; the experimental outcomes have been exploited to validate a finite element (FE) model developed in Abaqus and used to numerically perform the monotonic loading simulations of 30 joints. Afterwards, starting from the extracted information about stiffness, a regression analysis was carried out to define the coefficient of a design equation analytically derived applying the component method approach. The regression analysis is characterized by a coefficient of variation equal to 0.19.
机译:双TEE配置文件是欧洲和美国最受欢迎的成员,用于钢结构。然而,可以采用更有效的横截面,例如圆形中空部分(CHS),因为它们可以提供更高的审美,经济和机械效益,其中唯一复杂连接的缺点,例如在I-梁的情况下焊接到圆形空心型材的外表面。基于ToGo开发的环形模型理论,规则设计了这种连接的弯曲电阻已被包括在欧洲码码3部分1.8中,同时不提供制剂以预测相应的初始刚度。目前的工作旨在填补这种知识差距,采用基于实验,数值和分析工作的方法。已经在两个波束到柱子组件上进行单调和循环测试;已经利用实验结果来验证在ABAQUS中开发的有限元(FE)模型,用于数值执行30个关节的单调加载模拟。然后,从关于刚度的提取信息开始,执行回归分析以定义分析地推导出应用组件方法方法的设计方程的系数。回归分析的特征在于变异系数等于0.19。

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