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Monotonic and cyclic behaviour of cuff beam-to-column connection system for tubular pultruded GFRP profiles

机译:管状拉挤GFRP型材的袖带到柱连接系统的单调和循环行为

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The use of glass-fibre reinforced polymer (GFRP) cuff parts to join GFRP beams and columns has been object of several experimental and numerical studies in the past, which showed their improved mechanical performance when compared to connection systems that mimic steel structures, such as connections with GFRP web and/or flange cleats. The main objective of the study presented in this paper is to propose and assess a connection system - for tubular GFRP profiles -with similar cuff geometry, but made of stainless steel, in order to achieve higher ductility due to its inherent strain hardening, while maintaining the non-corrodibility capabilities of GFRP. Fullscale tests were performed on four different beam-to-column connection series using stainless steel cuffs with varying geometry and plate thickness. The experimental campaign comprised: (i) monotonic tests for all series; and (ii) cyclic tests for the series with the best performance in the monotonic tests. The monotonic response of the different series varied considerably. As expected, by increasing the plate thickness of the cuff, the initial stiffness and strength of the connections were substantially improved; on the other hand, the moment vs. rotation behaviour of connections with thinner cuff parts was more markedly non-linear and GFRP damage was delayed. Nevertheless, all connection series presented significant ductility, successfully making use of the stainless steel mechanical properties. For both monotonic and cyclic loading, the cuff connection system presented herein provided better mechanical performance than stainless steel sleeve connections developed earlier by the authors, namely regarding initial stiffness, overall strength and energy dissipation.
机译:使用玻璃纤维增​​强聚合物(GFRP)袖带部件加入GFRP梁和柱的目的是过去几种实验和数值研究的目的,这与模拟钢结构的连接系统相比,它们的机械性能提高了,例如与GFRP网和/或法兰夹板的连接。本文提出了该研究的主要目的是提出并评估连接系统 - 用于管状GFRP型材 - 类似的袖带几何形状,但由不锈钢制成,以实现由于其固有的应变硬化而导致的延展性更高,同时保持GFRP的非腐蚀功能。使用具有不同几何形状和板厚的不锈钢袖口在四个不同的光束到柱连接系列上进行全级测试。实验活动包括:(i)所有系列的单调测试; (ii)系列循环试验,具有单调测试中最佳性能。不同系列的单调响应大大变化。正如预期的那样,通过增加袖带的板厚度,连接的初始刚度和强度基本上改善;另一方面,当与较薄的袖带部件的连接的旋转行为更明显是非线性的,并且GFRP损坏被延迟。尽管如此,所有连接系列都呈现出显着的延展性,成功地利用不锈钢机械性能。对于单调和循环负载,本文提供的袖带连接系统提供比作者早期开发的不锈钢套筒连接更好的机械性能,即关于初始刚度,总体强度和能量耗散。

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