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Experimental and Numerical Assessment of Reduced IPE Beam Sections Connections with Box-Stiffener

机译:箱形加劲肋简化IPE梁截面连接的实验和数值评估

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摘要

Reduced Beam Section (RBS) is a new type of connection in steel moment resistant frames that was introduced after the Northridge earthquake of 1994. The application of RBS connections associated with reduced beam flange width can aid in accelerating web, flange, and lateral-torsional bucklings in the beam. To fix this problem, a new type of stiffener called the box-stiffener was presented in this study, which exactly encases the reduced portion of the beam. First, 4 laboratory tests were performed on RBS connections made of IPE140 and IPE270 sections in the two conditions of 'with' and 'without' a boxstiffener. Laboratory results showed that the stiffener considerably enhanced the connection ductility without a significant increase in the connection's resistance. To examine other sizes of IPE sections, a verified Finite Element model was utilized. The results of the numerical models also confirmed the suitable performance of the box-stiffener.
机译:减小梁截面(RBS)是钢制抗弯框架中的新型连接形式,它是在1994年Northridge地震后引入的。与减小梁的翼缘宽度相关的RBS连接的应用可以帮助加速腹板,翼缘和横向扭转在梁上弯曲。为了解决这个问题,在这项研究中提出了一种新型的加劲肋,称为箱形加劲肋,它精确地包裹了梁的缩小部分。首先,在“有”和“没有”盒式加劲肋的两个条件下,对由IPE140和IPE270型材制成的RBS连接进行了4个实验室测试。实验室结果表明,加劲肋显着提高了连接的延展性,而不会显着增加连接的阻力。为了检查IPE截面的其他尺寸,使用了经过验证的有限元模型。数值模型的结果也证实了箱式加劲肋的合适性能。

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