Affiliation:
1. Dongyang Structural Engineering & Remodeling, Seoul, Republic of Korea
2. Department of Architectural Engineering, Hannam University, Daejeon, Republic of Korea
3. Division of Architecture and Architectural Engineering, Hanyang University, ERICA Campus, Ansan, Republic of Korea
Abstract
In this study, constituent elements affecting the shear strength of RCS joints were investigated through experiment and analysis study. A series of five interior RCS beam-column joint specimens, which were classified as JH-type and CP-type, was tested to investigate the contribution of each shear resisting element such as JH (Joint Hoop), CP (Cover Plate), FBP (Face Bearing Plate), E-FBP (Extended Face Bearing Plate), TB (Transverse Beam), and BP (Band Plate). Comparison between experiment and analysis results showed that the stiffness and strength of the RCS joint were reasonably assessed from the analysis. As a result of the analysis, it was found that TB, E-FBP, and CP increased the shear strength by about 15%, 14%, and 26%, respectively. For the JH-type specimen, 70% of the shear strength of the RCS joint is supported by the inner element and 30% of the shear strength is supported by the outer element. Shear strength contribution ratio of the outer element of CP-type specimen is larger than that of the JH-type specimen. For all specimens except for SNI-1, around 10% of total shear strength is supported by FBP. The shear strength equation of the RCS joint proposed by ASCE underestimates the contribution of the outer element, while that of M-Kanno tends to overestimate it.
Subject
Civil and Structural Engineering
Reference26 articles.
1. Composite frame construction;L. G. Griffis,1992
2. Seismic Behavior of Composite RCS Frame Systems
3. Guidelines: Seismic Design of Composite Reinforced Concrete and Steel Buildings
4. Load carrying capacity of composite exterior joint with steel beam;M. Wakabayashi;Transactions of the Japan Concrete Institute,1983
5. “Design methods and problems on composite structures”, no.9, III-7;I. Nishiyama;Concrete Journal,1990
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献