首页> 外文会议>Structural Stability Research Council 2010 annual stability conference : Reports on current research activities >IMPROVING THE DUCTILITY OF STEEL I-BEAMS THROUGH THE USE OF GLASS FIBER REINFORCED POLYMERS
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IMPROVING THE DUCTILITY OF STEEL I-BEAMS THROUGH THE USE OF GLASS FIBER REINFORCED POLYMERS

机译:通过使用玻璃纤维增​​强的聚合物提高钢工字钢的延展性

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Flange and web local buckling in beam plastic hinge regions of steel moment frames can prevent beam-column connections from achieving adequate plastic rotations under earthquake-induced forces. Reducing the flange-web slenderness ratios (FSR/WSR) of beams is the most effective way in mitigating local buckling as stipulated in the latest seismic design specifications. However, existing steel moment frame buildings with beams that lack the adequate slenderness ratios set forth for new buildings are vulnerable to local member buckling and thereby system-wise instability prior to reaching the required plastic rotation capacities specified for new buildings. This paper presents results from a research study investigating the cyclic behavior of steel I-beams modified by a welded haunch at the bottom flange and reinforced with glass fiber reinforced polymers at the plastic hinge region. Cantilever I-sections with a triangular haunch at the bottom flange and FSR higher then those stipulated in current design specifications were analyzed under reversed cyclic loading. Beam sections with different depth/width and flange/web slenderness ratios (FSR/WSR) were considered. The FEA results revealed that the GFRP reinforcement moderately improves the plastic local behavior of steel I-beams.
机译:钢制弯矩框架的梁塑料铰链区域中的法兰和腹板局部屈曲会阻止梁柱连接在地震作用下获得足够的塑性旋转。降低梁的翼缘纤网细长比(FSR / WSR)是缓解最新抗震设计规范中规定的局部屈曲的最有效方法。但是,现有的钢制矩型框架结构的梁缺少为新建筑物设定的适当的长细比,因此在达到新建筑物指定的所需塑料旋转能力之前,它们容易受到局部构件屈曲的影响,从而导致系统不稳定。本文介绍了一项研究的结果,该研究研究了钢制I型钢的循环行为,该钢I型钢在底部法兰处采用焊接方式进行了修整,并在塑料铰链区域采用了玻璃纤维增​​强的聚合物进行了加固。在反向循环载荷下分析了悬臂的I型截面,其底部凸缘处有三角形的斜角,且FSR高于当前设计规范中规定的FSR。考虑了具有不同深度/宽度和翼缘/腹板细长比(FSR / WSR)的梁截面。 FEA结果表明,GFRP加固适度改善了工字钢的塑性局部性能。

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