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Reinforced Concrete Beams Columns And Frames

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Reinforced Concrete Beams Columns and Frames

Reinforced Concrete Beams  Columns and Frames Book
Author : Charles Casandjian,Noël Challamel,Christophe Lanos,Jostein Hellesland
Publisher : John Wiley & Sons
Release : 2013-02-05
ISBN : 1118639464
File Size : 52,5 Mb
Language : En, Es, Fr and De

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Book Summary :

This book is focused on the theoretical and practical design ofreinforced concrete beams, columns and frame structures. It isbased on an analytical approach of designing normal reinforcedconcrete structural elements that are compatible with mostinternational design rules, including for instance the Europeandesign rules – Eurocode 2 – for reinforced concretestructures. The book tries to distinguish between what belongs tothe structural design philosophy of such structural elements(related to strength of materials arguments) and what belongs tothe design rule aspects associated with specific characteristicdata (for the material or loading parameters). Reinforced ConcreteBeams, Columns and Frames – Mechanics and Design deals withthe fundamental aspects of the mechanics and design of reinforcedconcrete in general, both related to the Serviceability Limit State(SLS) and the Ultimate Limit State (ULS). A second book, entitledReinforced Concrete Beams, Columns and Frames – Section andSlender Member Analysis, deals with more advanced ULS aspects,along with instability and second-order analysis aspects. Somerecent research results including the use of non-local mechanicsare also presented. This book is aimed at Masters-level students,engineers, researchers and teachers in the field of reinforcedconcrete design. Most of the books in this area are very practicalor code-oriented, whereas this book is more theoretically based,using rigorous mathematics and mechanics tools. Contents 1. Design at Serviceability Limit State (SLS). 2. Verification at Serviceability Limit State (SLS). 3. Concepts for the Design at Ultimate Limit State (ULS). 4. Bending-Curvature at Ultimate Limit State (ULS). Appendix 1. Cardano’s Method. Appendix 2. Steel Reinforcement Table. About the Authors Charles Casandjian was formerly Associate Professor at INSA(French National Institute of Applied Sciences), Rennes, France andthe chairman of the course on reinforced concrete design. He haspublished work on the mechanics of concrete and is also involved increating a web experience for teaching reinforced concrete design– BA-CORTEX. Noël Challamel is Professor in Civil Engineering at UBS,University of South Brittany in France and chairman of the EMI-ASCEStability committee. His contributions mainly concern the dynamics,stability and inelastic behavior of structural components, withspecial emphasis on Continuum Damage Mechanics (more than 70publications in International peer-reviewed journals). Christophe Lanos is Professor in Civil Engineering at theUniversity of Rennes 1 in France. He has mainly published work onthe mechanics of concrete, as well as other related subjects. He isalso involved in creating a web experience for teaching reinforcedconcrete design – BA-CORTEX. Jostein Hellesland has been Professor of Structural Mechanics atthe University of Oslo, Norway since January 1988. His contributionto the field of stability has been recognized and magnified by manyhigh-quality papers in famous international journals such asEngineering Structures, Thin-Walled Structures, Journal ofConstructional Steel Research and Journal of StructuralEngineering.

Reinforced Concrete Beams Columns and Frames

Reinforced Concrete Beams  Columns and Frames Book
Author : Jostein Hellesland,Noël Challamel,Charles Casandjian,Christophe Lanos
Publisher : John Wiley & Sons
Release : 2013-02-13
ISBN : 1118635329
File Size : 51,9 Mb
Language : En, Es, Fr and De

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Book Summary :

This book is focused on the theoretical and practical design of reinforced concrete beams, columns and frame structures. It is based on an analytical approach of designing normal reinforced concrete structural elements that are compatible with most international design rules, including for instance the European design rules – Eurocode 2 – for reinforced concrete structures. The book tries to distinguish between what belongs to the structural design philosophy of such structural elements (related to strength of materials arguments) and what belongs to the design rule aspects associated with specific characteristic data (for the material or loading parameters). A previous book, entitled Reinforced Concrete Beams, Columns and Frames – Mechanics and Design, deals with the fundamental aspects of the mechanics and design of reinforced concrete in general, both related to the Serviceability Limit State (SLS) and the Ultimate Limit State (ULS), whereas the current book deals with more advanced ULS aspects, along with instability and second-order analysis aspects. Some recent research results including the use of non-local mechanics are also presented. This book is aimed at Masters-level students, engineers, researchers and teachers in the field of reinforced concrete design. Most of the books in this area are very practical or code-oriented, whereas this book is more theoretically based, using rigorous mathematics and mechanics tools. Contents 1. Advanced Design at Ultimate Limit State (ULS). 2. Slender Compression Members – Mechanics and Design. 3. Approximate Analysis Methods. Appendix 1. Cardano’s Method. Appendix 2. Steel Reinforcement Table. About the Authors Jostein Hellesland has been Professor of Structural Mechanics at the University of Oslo, Norway since January 1988. His contribution to the field of stability has been recognized and magnified by many high-quality papers in famous international journals such as Engineering Structures, Thin-Walled Structures, Journal of Constructional Steel Research and Journal of Structural Engineering. Noël Challamel is Professor in Civil Engineering at UBS, University of South Brittany in France and chairman of the EMI-ASCE Stability committee. His contributions mainly concern the dynamics, stability and inelastic behavior of structural components, with special emphasis on Continuum Damage Mechanics (more than 70 publications in International peer-reviewed journals). Charles Casandjian was formerly Associate Professor at INSA (French National Institute of Applied Sciences), Rennes, France and the chairman of the course on reinforced concrete design. He has published work on the mechanics of concrete and is also involved in creating a web experience for teaching reinforced concrete design – BA-CORTEX. Christophe Lanos is Professor in Civil Engineering at the University of Rennes 1 in France. He has mainly published work on the mechanics of concrete, as well as other related subjects. He is also involved in creating a web experience for teaching reinforced concrete design – BA-CORTEX.

Composite Structures Of Steel And Concrete

Composite Structures Of Steel And Concrete Book
Author : R. P. Johnson
Publisher : Wiley-Blackwell
Release : 1995-11-22
ISBN : 9780632040957
File Size : 52,7 Mb
Language : En, Es, Fr and De

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Book Summary :

This book sets out the basic principles of composite construction with reference to beams, slabs, columns and frames, and their applications to building structures. It deals with the problems likely to arise in the design of composite members in buildings, and relates basic theory to the design approach of Eurocodes 2, 3 and 4. The new edition is based for the first time on the finalised Eurocode for steel/concrete composite structures.

High Performance Fiber Reinforced Cement Composites 6

High Performance Fiber Reinforced Cement Composites 6 Book
Author : Gustavo J. Parra-Montesinos,Hans W. Reinhardt
Publisher : Springer Science & Business Media
Release : 2012-01-28
ISBN : 9400724365
File Size : 29,6 Mb
Language : En, Es, Fr and De

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Book Summary :

High Performance Fiber Reinforced Cement Composites (HPFRCC) represent a class of cement composites whose stress-strain response in tension undergoes strain hardening behaviour accompanied by multiple cracking, leading to a high strain prior to failure. The primary objective of this International Workshop was to provide a compendium of up-to-date information on the most recent developments and research advances in the field of High Performance Fiber Reinforced Cement Composites. Approximately 65 contributions from leading world experts are assembled in these proceedings and provide an authoritative perspective on the subject. Special topics include fresh and hardening state properties; self-compacting mixtures; mechanical behavior under compressive, tensile, and shear loading; structural applications; impact, earthquake and fire resistance; durability issues; ultra-high performance fiber reinforced concrete; and textile reinforced concrete. Target readers: graduate students, researchers, fiber producers, design engineers, material scientists.

Composite Structures of Steel and Concrete

Composite Structures of Steel and Concrete Book
Author : Roger P. Johnson
Publisher : John Wiley & Sons
Release : 2018-11-12
ISBN : 1119401437
File Size : 42,9 Mb
Language : En, Es, Fr and De

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Book Summary :

This book provides an introduction to the theory and design of composite structures of steel and concrete. Material applicable to both buildings and bridges is included, with more detailed information relating to structures for buildings. Throughout, the design methods are illustrated by calculations in accordance with the Eurocode for composite structures, EN 1994, Part 1-1, ‘General rules and rules for buildings’ and Part 1-2, ‘Structural fire design’, and their cross-references to ENs 1990 to 1993. The methods are stated and explained, so that no reference to Eurocodes is needed. The use of Eurocodes has been required in the UK since 2010 for building and bridge structures that are publicly funded. Their first major revision began in 2015, with the new versions due in the early 2020s. Both authors are involved in the work on Eurocode 4. They explain the expected additions and changes, and their effect in the worked examples for a multi-storey framed structure for a building, including resistance to fire. The book will be of interest to undergraduate and postgraduate students, their lecturers and supervisors, and to practising engineers seeking familiarity with composite structures, the Eurocodes, and their ongoing revision.

Composite Structures of Steel and Concrete

Composite Structures of Steel and Concrete Book
Author : R. P. Johnson
Publisher : John Wiley & Sons
Release : 2008-04-15
ISBN : 1405168390
File Size : 52,5 Mb
Language : En, Es, Fr and De

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Book Summary :

This book sets out the basic principles of composite constructionwith reference to beams, slabs, columns and frames, and theirapplications to building structures. It deals with the problemslikely to arise in the design of composite members in buildings,and relates basic theory to the design approach of Eurocodes 2, 3and 4. The new edition is based for the first time on the finalisedEurocode for steel/concrete composite structures.

Composite Structures of Steel and Concrete Beams columns frames and applications in building

Composite Structures of Steel and Concrete  Beams  columns  frames and applications in building Book
Author : Roger Paul Johnson
Publisher : Unknown
Release : 1975
ISBN : 0987650XXX
File Size : 44,5 Mb
Language : En, Es, Fr and De

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Book Summary :

Download Composite Structures of Steel and Concrete Beams columns frames and applications in building book written by Roger Paul Johnson and published by with total hardcover pages 236 . Available in PDF, EPUB, and Kindle, read book directly with any devices anywhere and anytime.

RC Frames Under Earthquake Loading

RC Frames Under Earthquake Loading Book
Author : Comité euro-international du béton
Publisher : Thomas Telford
Release : 1996
ISBN : 9780727720856
File Size : 45,6 Mb
Language : En, Es, Fr and De

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Book Summary :

This report examines the behaviour of individual frame members subjected to the cyclic actions arising in seismically loaded frames i.e. slender flexure-dominated beams, short columns and beam-column joints. The report also considers global inelastic frame behaviour and its modelling, and the peculiarities of the behaviour of masonry-filled frames.