塑性铰链
轮缘
连接(主束)
梁(结构)
铰链
消散
材料科学
结构工程
冷成型
章节(排版)
复合材料
工程类
计算机科学
物理
热力学
操作系统
作者
Seyed Mehdi Zahrai,Seyed Rasoul Mirghaderi,Aboozar Saleh
出处
期刊:Steel and Composite Structures
[Technopress]
日期:2017-03-20
卷期号:23 (4): 421-433
被引量:11
标识
DOI:10.12989/scs.2017.23.4.421
摘要
Experimental and numerical studies of a newly developed Reduced Beam Section (RBS) connection, called Tubular Web RBS connection (TW-RBS) have been recently conducted. This paper presents experimental and numerical results of extending the plastic hinge length on the beam flange to increase energy dissipation of a proposed version of the TW-RBS connection with two pipes, (TW-RBS(II)), made by replacing a part of flat web with two steel tubular web at the desirable location of the beam plastic hinge. Two deep-beam specimens with two pipes are prepared and tested under cyclic loads. Obtained results reveal that the TW-RBS(II) like its type I, increases story drift capacity up to 6% in deep beam much more than that stipulated by the current seismic codes. Based on test results, the proposed TW-RBS(II) helps to dissipate imposed energy up to 30% more than that of the TW-RBS(I) specimens at the same story drift and also reduces demands at the beam-to-column connection up to 30% by increasing plastic hinge length on the beam flange. The TW-RBS(II) specimens are finally simulated using finite element method showing good agreement with experimental results.
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