首页> 外文期刊>Journal of Composites for Construction >Bonded Sleeve Connections for Joining Tubular Glass Fiber-Reinforced Polymer Beams and Columns: Experimental and Numerical Studies
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Bonded Sleeve Connections for Joining Tubular Glass Fiber-Reinforced Polymer Beams and Columns: Experimental and Numerical Studies

机译:用于连接玻璃纤维增​​强聚合物梁和柱的粘结套管连接:实验和数值研究

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摘要

A bonded sleeve connection was developed for joining tubular glass fiber-reinforced polymer (GFRP) beams and columns. It utilizes a sleeve connector made by welding a steel tube to a steel endplate. The steel tube is then inserted into and adhesively bonded with the GFRP beam end and the endplate is connected to the GFRP column using through-bolts. Four beam-to-column specimens with different bond lengths between the GFRP beam and steel tube and different numbers of bolts were tested. The moment-rotation responses, failure modes, and local strain responses were experimentally received and comparatively studied. The measured initial rotational stiffness of the proposed bonded sleeve connections was evaluated against a standard classification and compared to existing connection systems. Numerical analysis was also performed through finite element (FE) modeling. Paired contact elements and pretension elements were used to model the bolted connections, taking into account effects of friction, pretension force, and bolt hole clearance. Relevant failure criteria were also used to indicate yielding of the steel endplate and cohesive failure. Modeling and experimental results compared well in terms of moment-rotation behavior and failure modes. Further parametric study evidenced dominant effects of endplate thickness on the initial rotational stiffness of the connections.
机译:开发了一种用于连接管状玻璃纤维增​​强聚合物(GFRP)的梁和柱的粘结套管连接。它利用将钢管焊接到钢制端板上制成的套筒连接器。然后,将钢管插入GFRP梁端并与之粘接,然后将端板通过螺栓连接到GFRP柱上。测试了四个在GFRP梁与钢管之间具有不同粘结长度以及不同螺栓数量的梁对柱试样。弯矩-旋转响应,破坏模式和局部应变响应通过实验得到接受并进行了比较研究。根据标准分类评估了建议的粘结式套筒连接的测得的初始旋转刚度,并与现有连接系统进行了比较。还通过有限元(FE)建模进行了数值分析。考虑到摩擦力,预紧力和螺栓孔间隙的影响,使用成对的接触元件和预紧元件对螺栓连接进行建模。相关的破坏标准也被用来指示钢端板的屈服和内聚破坏。建模和实验结果在力矩旋转行为和破坏模式方面进行了比较。进一步的参数研究证明了端板厚度对连接的初始旋转刚度的主要影响。

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