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Design of Links and Beam-to-column Connections for Eccentrically Braced Steel Frames

Design of Links and Beam-to-column Connections for Eccentrically Braced Steel Frames PDF Author: Egor Paul Popov
Publisher:
ISBN:
Category : Building, Iron and steel
Languages : en
Pages : 138

Book Description


Design of Links and Beam-to-column Connections for Eccentrically Braced Steel Frames

Design of Links and Beam-to-column Connections for Eccentrically Braced Steel Frames PDF Author: Egor Paul Popov
Publisher:
ISBN:
Category : Building, Iron and steel
Languages : en
Pages : 138

Book Description


Design Considerations for Shear Links in Eccentrically Braced Frames

Design Considerations for Shear Links in Eccentrically Braced Frames PDF Author: James O. Malley
Publisher:
ISBN:
Category : Earthquake resistant design
Languages : en
Pages : 150

Book Description


Experiments on Link-to-column Connections in Steel Eccentrically Braced Frames

Experiments on Link-to-column Connections in Steel Eccentrically Braced Frames PDF Author: Apostolos Drolias
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Seismic Behavior of Active Beam Links in Eccentrically Braced Frames

Seismic Behavior of Active Beam Links in Eccentrically Braced Frames PDF Author: Keith D. Hjelmstad
Publisher:
ISBN:
Category : Buildings
Languages : en
Pages : 186

Book Description


Seismic Performance of Link-to-column Connections in Steel Eccentrically Braced Frames

Seismic Performance of Link-to-column Connections in Steel Eccentrically Braced Frames PDF Author: Taichiro Okazaki
Publisher:
ISBN:
Category : Earthquake resistant design
Languages : en
Pages :

Book Description


Strength Tuned Steel Eccentric Braced Frames

Strength Tuned Steel Eccentric Braced Frames PDF Author:
Publisher:
ISBN:
Category : Earthquake resistant design
Languages : en
Pages : 221

Book Description
The primary component in eccentrically braced frames (EBF) is the link as its plastic strength controls the design of the frame as well as the entire building within which it is installed. EBFs are the first part of building design and every other component is sized based on the forces developed in the link. Oversized link elements lead to the use of unnecessary materials and can increase construction costs. Additionally, the advantages of using a continuous member of the same depth for both the link and the controller beam (in terms of the cost and the time) motivates researchers to find a way to control the link strength in conventional EBFs. Previous studies on the link-to-column connections in EBF have shown that the links are likely to fail before reaching the required rotation due to fractures at low drift level. Moreover, improving the strength of the links in EBF depends primarily on their ability to achieve target inelastic deformation and to provide high ductility during earthquakes. Therefore, in this study, the concept of tuned link strength properties in EBF, T-EBF, is experimentally introduced as a solution to improve the performance of the link in conventional EBF by cutting out an opening in the link web. Furthermore, a new brace-to-link connection is proposed to bolt the brace member with the link in contrast to the conventional method of welding them. This new idea in continuous beam design was investigated to verify the stability of the tuned eccentrically braced frame, either welded or bolted, with a bracing member. A total of four full-scale cyclic tests were conducted to study the ability of T-EBF to achieve inelastic deformation. The specimens have two different cross sections: W18x76 and W16x67, two different sections where the brace was welded to the link, and two other specimens at different sections where the brace was bolted to the link were examined. The experimental results indicate that the link in T-EBF can achieve high rotation, exceeding 0.15 rad, and an overstrength factor equal to 1.5. Failure involved included web buckling at very high rotation. The T-EBF displayed a very good, non-replaceable ductile link. The experiments were followed by an isotropic kinematic-combined hardening model in the finite element analyses (FEA). The FEA analysis is developed to predict the effect of web opening configuration on the local section stresses and strains and global characteristics of the frame. FEA exhibits good agreement with the experimental results and can capture the inelastic buckling behavior of the sections. The link configuration parameters of the T-EBF were studied extensively on a W18x76 shear link subjected to the 2016 AISC seismic design provisions loading protocol (ANSI/AISC 341-16, 2016). The parametric study also included the performance of a range of wide flange sections. The analysis shows that the reduced web section has effect on the plastic strain in which low plastic strain observed near ends and connections and high at the center of the web. Results also demonstrate that if the shear link is appropriately sized with web opening and intermediate web stiffeners provided, an excellent shear link with high ductility under cyclic loads can be obtained. Changing the configuration of the opening cutout also had a significant effect on reducing the transition zone cracks.

Behavior of Long Links in Eccentrically Braced Frames

Behavior of Long Links in Eccentrically Braced Frames PDF Author: Michael D. Engelhardt
Publisher:
ISBN:
Category : Building, Iron and steel
Languages : en
Pages : 418

Book Description


Connections in Steel Structures

Connections in Steel Structures PDF Author: R. Bjorhovde
Publisher: CRC Press
ISBN: 1851661778
Category : Architecture
Languages : en
Pages : 396

Book Description
Proceedings of a State-of-the-Art Workshop on Connections and the Behaviour, Strength and Design of Steel Structures, Laboratorie de Mechanique et Technology, Ecole Normale Superieure, Cachan, France, 25-27 May 1987."

Development of the Design of Eccentrically Braced Frames with Replaceable Shear Links

Development of the Design of Eccentrically Braced Frames with Replaceable Shear Links PDF Author: Nabil Mansour
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Seismic Design of Steel Structures

Seismic Design of Steel Structures PDF Author: Victor Gioncu
Publisher: CRC Press
ISBN: 0415242630
Category : Technology & Engineering
Languages : en
Pages : 528

Book Description
Providing real world applications for different structural types and seismic characteristics, Seismic Design of Steel Structures combines knowledge of seismic behavior of steel structures with the principles of earthquake engineering. This book focuses on seismic design, and concentrates specifically on seismic-resistant steel structures. Drawing on experience from the Northridge to the Tohoku earthquakes, it combines understanding of the seismic behavior of steel structures with the principles of earthquake engineering. The book focuses on the global as well as local behavior of steel structures and their effective seismic-resistant design. It recognises different types of earthquakes, takes into account the especial danger of fire after earthquake, and proposes new bracing and connecting systems for new seismic resistant steel structures, and also for upgrading existing reinforced concrete structures. Includes the results of the extensive use of the DUCTROCT M computer program, which is used for the evaluation of the seismic available ductility, both monotonic and cyclic, for different types of earthquakes Demonstrates good design principles by highlighting the behavior of seismic-resistant steel structures in many applications from around the world Provides a methodological approach, making a clear distinction between strong and low-to-moderate seismic regions This book serves as a reference for structural engineers involved in seismic design, as well as researchers and graduate students of seismic structural analysis and design.