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首页> 外文期刊>Canadian Journal of Civil Engineering >Cyclic performance of existing moment connections in steel retrofitted with a reduced beam section and bottom flange reinforcements
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Cyclic performance of existing moment connections in steel retrofitted with a reduced beam section and bottom flange reinforcements

机译:钢制现有弯矩连接的循环性能,其钢梁截面和底部法兰加强筋经过改装

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摘要

This study investigated the effectiveness of retrofit methods in improving the deformation capacity of existing moment connections in composite beams. Nonlinear finite element analysis was also performed to identify the cause of the connection failure prior to testing. Tests included one conventional specimen and four retrofit specimens. Three retrofit methods were introduced: a reduced beam section (RBS) only, an RBS with bottom flange reinforcement (RBR), and an RBS-shaped bottom flange reinforcement (RSR). A composite beam performs differently than a bare steel shape because the concrete compression flange greatly increases the tensile demands on an unreinforced bottom flange. Therefore, these retrofit methods were applied only to the bottom flanges of the beam. Quasi-static loading tests were performed. The main conclusions were as follows: (i) the deformation capacity of the existing moment connections in composite beams is not sufficiently improved by RBS alone; and (ii) both the RBR and RSR details move the plastic hinge away from the face of the column and reduce stress levels in the vicinity of the beam bottom flanges, sufficiently improving the deformation capacity.
机译:这项研究调查了改进方法在提高组合梁中现有弯矩连接处的变形能力方面的有效性。还进行了非线性有限元分析,以在测试之前确定连接失败的原因。测试包括一个常规样本和四个改装样本。引入了三种改造方法:仅减小梁截面(RBS),具有底部法兰加强件的RBS(RBR)和RBS形底部法兰加强件(RSR)。复合梁的性能不同于裸钢形状,因为混凝土压缩法兰大大增加了对未增强底部法兰的拉伸要求。因此,这些改造方法仅应用于梁的底部法兰。进行了准静态载荷测试。主要结论如下:(i)单靠RBS不能充分改善复合梁中已有弯矩连接的变形能力; (ii)RBR和RSR细节都将塑料铰链从柱子的表面移开,并降低了梁底部法兰附近的应力水平,从而充分提高了变形能力。

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