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Development of an Ultra-lightweight Buckling-restrained Brace Using Analytical and Numerical Methods

Development of an Ultra-lightweight Buckling-restrained Brace Using Analytical and Numerical Methods PDF Author: John Andrew Tinker
Publisher:
ISBN:
Category : Aluminum, Structural
Languages : en
Pages : 212

Book Description
An ultra-lightweight buckling-restrained brace (ULWBRB) is developed using a highly ductile aluminum core and FRP restrainer. Utilization of lightweight materials results in a BRB that is 25% the weight of traditional mortar-filled tube varieties allowing easy installation in small to medium sized buildings requiring seismic retrofit without the need for heavy equipment. Construction utilizes commonly stocked materials able to be customized for required strength, drift, and geometry limitations. Analytical single degree of freedom (SDOF) and Euler buckling models are compared with published equations to determine the required restrainer stiffness (RRS). SDOF models yield RRS values 200% higher than the Euler model. Applied end moments due to frame deformation are incorporated into a modified design method that gives RRS values 50% higher than Euler model without eccentricity. RRS is provided using a bundled and wrapped FRP tube configuration using a developed shear flow method considering composite action. Uniaxial low-cycle fatigue (LCF) testing of a 6061-T6 candidate alloy provides data for a constitutive model using combined kinematic-isotropic hardening. LCF testing of round short gage coupons indicates the candidate alloy is capable of stable cycling to 2%, 3%, and 4% total strain with excellent ductility. Early fracture of specimens at 24, 18, and 11 cycles, respectively, also indicates that other candidate alloys should be examined for improved fatigue life. However, inconsistency is noted between similar tests of 6061-T6 that were able to achieve up to 76 cycles at 2.5% total strain. ULWBRB FEA models loaded monotonically consistently give higher RRS values as compared to the analytical methods. This is due to assignment of initial imperfections, longer more realistic unbraced length, higher axial loads achieved through the post-yield region, and plastic hinging potential. Cyclic simulations of braces with the same RRS values are also able to achieve reliable and stable hysteretic behavior through 21 cycles. If a less stiff restrainer is used, cumulative energy dissipation potential is reduced considerably due to pinched hysteresis loops and strain ratcheting. Applied end moments are found to have a linear effect on the RRS that can be modeled by superposition of the buckling effect plus end moment.

Development of an Ultra-lightweight Buckling-restrained Brace Using Analytical and Numerical Methods

Development of an Ultra-lightweight Buckling-restrained Brace Using Analytical and Numerical Methods PDF Author: John Andrew Tinker
Publisher:
ISBN:
Category : Aluminum, Structural
Languages : en
Pages : 212

Book Description
An ultra-lightweight buckling-restrained brace (ULWBRB) is developed using a highly ductile aluminum core and FRP restrainer. Utilization of lightweight materials results in a BRB that is 25% the weight of traditional mortar-filled tube varieties allowing easy installation in small to medium sized buildings requiring seismic retrofit without the need for heavy equipment. Construction utilizes commonly stocked materials able to be customized for required strength, drift, and geometry limitations. Analytical single degree of freedom (SDOF) and Euler buckling models are compared with published equations to determine the required restrainer stiffness (RRS). SDOF models yield RRS values 200% higher than the Euler model. Applied end moments due to frame deformation are incorporated into a modified design method that gives RRS values 50% higher than Euler model without eccentricity. RRS is provided using a bundled and wrapped FRP tube configuration using a developed shear flow method considering composite action. Uniaxial low-cycle fatigue (LCF) testing of a 6061-T6 candidate alloy provides data for a constitutive model using combined kinematic-isotropic hardening. LCF testing of round short gage coupons indicates the candidate alloy is capable of stable cycling to 2%, 3%, and 4% total strain with excellent ductility. Early fracture of specimens at 24, 18, and 11 cycles, respectively, also indicates that other candidate alloys should be examined for improved fatigue life. However, inconsistency is noted between similar tests of 6061-T6 that were able to achieve up to 76 cycles at 2.5% total strain. ULWBRB FEA models loaded monotonically consistently give higher RRS values as compared to the analytical methods. This is due to assignment of initial imperfections, longer more realistic unbraced length, higher axial loads achieved through the post-yield region, and plastic hinging potential. Cyclic simulations of braces with the same RRS values are also able to achieve reliable and stable hysteretic behavior through 21 cycles. If a less stiff restrainer is used, cumulative energy dissipation potential is reduced considerably due to pinched hysteresis loops and strain ratcheting. Applied end moments are found to have a linear effect on the RRS that can be modeled by superposition of the buckling effect plus end moment.

Proceedings of the 2022 International Conference on Green Building, Civil Engineering and Smart City

Proceedings of the 2022 International Conference on Green Building, Civil Engineering and Smart City PDF Author: Wei Guo
Publisher: Springer Nature
ISBN: 9811952175
Category : Technology & Engineering
Languages : en
Pages : 1285

Book Description
This book of the conference proceedings focuses on innovative design, technology and methods in the fields of building, civil engineering and smart city. It contains a large number of detailed design, construction and performance analysis charts, benefited to students, teachers, research scholars and other professionals in related fields. As well, readers will encounter new ideas for realizing more safe, intelligent and economical buildings.

Development and Numerical Validation of New Hybrid Multi-core Buckling-restrained Braces for Enhanced Seismic Performance

Development and Numerical Validation of New Hybrid Multi-core Buckling-restrained Braces for Enhanced Seismic Performance PDF Author: Pierre Thibault
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
Contemporary seismic-resistant design of steel structures relies on the dissipation of earthquake energy through significant inelastic deformations. Buckling-restrained braced frames (BRBFs) are a type of concentrically-braced system characterized by braces that yield both in tension and in compression. Thanks to a restraining mechanism that confines a ductile steel core, buckling-restrained braces (BRBs) can take advantage of the cyclic ductility of the steel material. However, BRBs commonly display a low post-yield stiffness, causing substantial interstory drifts and large residual drifts after seismic events. Moreover, yielding of the core is often tied to only a single performance objective, thus making its response at other levels of seismicity largely unpredictable. Hybrid BRB solutions are explored as an alternative to the traditional BRB system to overcome its limitations. The hybrid concept is hinged on harnessing different characteristics from different materials that are carefully combined into one ductile design to achieve a desirable response. This numerical study has three main objectives. Potential core metals are first evaluated to determine the best combinations of two materials with complementary engineering properties. Analysis of experimental data indicates that the post-yield behavior of hybrid BRBs is improved by employing 350WT carbon steel in conjunction with another metal, which possesses a low-yield and high-strain-hardening capacity (e.g., 304L stainless steel, 5083-O aluminum alloy, A36 carbon steel, or LYP-100 low-yield-point steel). Afterwards, two new hybrid BRB systems are designed to accommodate the complex deformation pattern of three core plates connected in parallel. The first proposed option has a restraining mechanism made from concrete-filled steel tubes, while the second hybrid BRB option is fabricated exclusively from metal plate components. Lastly, multiple finite element simulations are carried out on numerical models to quantitatively validate the performance enhancement. Compared to conventional BRBs, hybrid BRBs exhibit an improved strain hardening response, a slight increase in axial stiffness, and a greater energy dissipation capability for an equivalent brace strength.

Seismic Isolation, Energy Dissipation and Active Vibration Control of Structures

Seismic Isolation, Energy Dissipation and Active Vibration Control of Structures PDF Author: Gian Paolo Cimellaro
Publisher: Springer Nature
ISBN: 3031211871
Category : Science
Languages : en
Pages : 1074

Book Description
This volume gathers the proceedings of the 17th World Conference on Seismic Isolation (17WCSI), held in Turin, Italy on September 11-15, 2022. Endorsed by ASSISi Association (Anti-Seismic Systems International Society), the conference discussed state-of-the-art information as well as emerging concepts and innovative applications related to seismic isolation, energy dissipation and active vibration control of structures, resilience and sustainability. The volume covers highly diverse topics, including earthquake-resistant construction, protection from natural and man-made impacts, safety of structures, vulnerability, international standards on structures with seismic isolation, seismic isolation in existing structures and cultural heritage, seismic isolation in high rise buildings, seismic protection of non-structural elements, equipment and statues. The contributions, which are published after a rigorous international peer-review process, highlight numerous exciting ideas that will spur novel research directions and foster multidisciplinary collaboration among different specialists.

Recent Advances and Applications of Hybrid Simulation

Recent Advances and Applications of Hybrid Simulation PDF Author: Wei Song
Publisher: Frontiers Media SA
ISBN: 2889663809
Category : Technology & Engineering
Languages : en
Pages : 213

Book Description


Behaviour of Steel Structures in Seismic Areas

Behaviour of Steel Structures in Seismic Areas PDF Author: Federico Mazzolani
Publisher: CRC Press
ISBN: 1439859418
Category : Technology & Engineering
Languages : en
Pages : 1667

Book Description
Behaviour of Steel Structures in Seismic Areas comprises the latest progress in both theoretical and experimental research on the behaviour of steel structures in seismic areas. The book presents the most recent trends in the field of steel structures in seismic areas, with particular reference to the utilisation of multi-level performance bas

Performance Based Seismic Design for Tall Buildings

Performance Based Seismic Design for Tall Buildings PDF Author: Ramin Golesorkhi
Publisher:
ISBN: 9780939493562
Category : Buildings
Languages : en
Pages : 116

Book Description
Performance-Based Seismic Design (PBSD) is a structural design methodology that has become more common in urban centers around the world, particularly for the design of high-rise buildings. The primary benefit of PBSD is that it substantiates exceptions to prescribed code requirements, such as height limits applied to specific structural systems, and allows project teams to demonstrate higher performance levels for structures during a seismic event.However, the methodology also involves significantly more effort in the analysis and design stages, with verification of building performance required at multiple seismic demand levels using Nonlinear Response History Analysis (NRHA). The design process also requires substantial knowledge of overall building performance and analytical modeling, in order to proportion and detail structural systems to meet specific performance objectives.This CTBUH Technical Guide provides structural engineers, developers, and contractors with a general understanding of the PBSD process by presenting case studies that demonstrate the issues commonly encountered when using the methodology, along with their corresponding solutions. The guide also provides references to the latest industry guidelines, as applied in the western United States, with the goal of disseminating these methods to an international audience for the advancement and expansion of PBSD principles worldwide.

Structural Design for Fire Safety

Structural Design for Fire Safety PDF Author: Andrew H. Buchanan
Publisher: John Wiley & Sons
ISBN: 0470972890
Category : Technology & Engineering
Languages : en
Pages : 437

Book Description
Structural Design for Fire Safety, 2nd edition Andrew H. Buchanan, University of Canterbury, New Zealand Anthony K. Abu, University of Canterbury, New Zealand A practical and informative guide to structural fire engineering This book presents a comprehensive overview of structural fire engineering. An update on the first edition, the book describes new developments in the past ten years, including advanced calculation methods and computer programs. Further additions include: calculation methods for membrane action in floor slabs exposed to fires; a chapter on composite steel-concrete construction; and case studies of structural collapses. The book begins with an introduction to fire safety in buildings, from fire growth and development to the devastating effects of severe fires on large building structures. Methods of calculating fire severity and fire resistance are then described in detail, together with both simple and advanced methods for assessing and designing for structural fire safety in buildings constructed from structural steel, reinforced concrete, or structural timber. Structural Design for Fire Safety, 2nd edition bridges the information gap between fire safety engineers, structural engineers and building officials, and it will be useful for many others including architects, code writers, building designers, and firefighters. Key features: • Updated references to current research, as well as new end-of-chapter questions and worked examples. •Authors experienced in teaching, researching, and applying structural fire engineering in real buildings. • A focus on basic principles rather than specific building code requirements, for an international audience. An essential guide for structural engineers who wish to improve their understanding of buildings exposed to severe fires and an ideal textbook for introductory or advanced courses in structural fire engineering.

Proceedings of SECON 2020

Proceedings of SECON 2020 PDF Author: Kaustubh Dasgupta
Publisher: Springer Nature
ISBN: 3030551156
Category : Technology & Engineering
Languages : en
Pages : 959

Book Description
This book gathers peer-reviewed contributions presented at the 1st International Conference on Structural Engineering and Construction Management (SECON’20), held in Angamaly, Kerala, India, on 14-15 May 2020. The meeting served as a fertile platform for discussion, sharing sound knowledge and introducing novel ideas on issues related to sustainable construction and design for the future. The respective contributions address various aspects of numerical modeling and simulation in structural engineering, structural dynamics and earthquake engineering, advanced analysis and design of foundations, BIM, building energy management, and technical project management. Accordingly, the book offers a valuable, up-to-date tool and essential overview of the subject for scientists and practitioners alike, and will inspire further investigations and research.

Recent Trends in Civil Engineering

Recent Trends in Civil Engineering PDF Author: K. K. Pathak
Publisher: Springer Nature
ISBN: 9811551952
Category : Technology & Engineering
Languages : en
Pages : 1081

Book Description
This book presents the selected peer-reviewed proceedings of the International Conference on Recent Trends and Innovations in Civil Engineering (ICRTICE 2019). The volume focuses on latest research and advances in the field of civil engineering and materials science such as design and development of new environmental materials, performance testing and verification of smart materials, performance analysis and simulation of steel structures, design and performance optimization of concrete structures, and building materials analysis. The book also covers studies in geotechnical engineering, hydraulic engineering, road and bridge engineering, building services design, engineering management, water resource engineering and renewable energy. The contents of this book will be useful for students, researchers and professionals working in civil engineering.