Structural Concrete Textbook, Volume 5

Structural Concrete Textbook, Volume 5
Author: fib Fédération internationale du béton
Publisher: fib Fédération internationale du béton
Total Pages: 482
Release: 2012-06-01
Genre: Technology & Engineering
ISBN: 2883941025

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The third edition of the Structural Concrete Textbook is an extensive revision that reflects advances in knowledge and technology over the past decade. It was prepared in the intermediate period from the CEP-FIP Model Code 1990 (MC90) tofib Model Code for Concrete Structures 2010 (MC2010), and as such incorporates a significant amount of information that has been already finalized for MC2010, while keeping some material from MC90 that was not yet modified considerably. The objective of the textbook is to give detailed information on a wide range of concrete engineering from selection of appropriate structural system and also materials, through design and execution and finally behaviour in use. The revised fib Structural Concrete Textbook covers the following main topics: phases of design process, conceptual design, short and long term properties of conventional concrete (including creep, shrinkage, fatigue and temperature influences), special types of concretes (such as self compacting concrete, architectural concrete, fibre reinforced concrete, high and ultra high performance concrete), properties of reinforcing and prestressing materials, bond, tension stiffening, moment-curvature, confining effect, dowel action, aggregate interlock; structural analysis (with or without time dependent effects), definition of limit states, control of cracking and deformations, design for moment, shear or torsion, buckling, fatigue, anchorages, splices, detailing; design for durability (including service life design aspects, deterioration mechanisms, modelling of deterioration mechanisms, environmental influences, influences of design and execution on durability); fire design (including changes in material and structural properties, spalling, degree of deterioration), member design (linear members and slabs with reinforcement layout, deep beams); management, assessment, maintenance, repair (including, conservation strategies, risk management, types of interventions) as well as aspects of execution (quality assurance), formwork and curing. The updated textbook provides the basics of material and structural behaviour and the fundamental knowledge needed for the design, assessment or retrofitting of concrete structures. It will be essential reading material for graduate students in the field of structural concrete, and also assist designers and consultants in understanding the background to the rules they apply in their practice. Furthermore, it should prove particularly valuable to users of the new editions of Eurocode 2 for concrete buildings, bridges and container structures, which are based only partly on MC90 and partly on more recent knowledge which was not included in the 1999 edition of the textbook.

Corrosion of Steel in Concrete

Corrosion of Steel in Concrete
Author: J.P. Broomfield
Publisher: CRC Press
Total Pages: 263
Release: 1996-12-12
Genre: Architecture
ISBN: 0203475283

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The corrosion of reinforcing steel in concrete is a major problem facing civil engineers and surveyors throughout the world today. There will always be a need to build stuctures in corrosive environments and it is therefore essential to address the problems that result. Corrosion of Steel in Concrete provides information on corrosion of steel in at

Condition Evaluation of Concrete Bridges Relative to Reinforcement Corrosion

Condition Evaluation of Concrete Bridges Relative to Reinforcement Corrosion
Author: Philip Dale Cady
Publisher:
Total Pages: 124
Release: 1992
Genre: Concrete bridges
ISBN: 9780309052641

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A procedure is presented for the condition assessment of concrete bridge components. It is based on a rational integration of 13 applicable, current test methods or procedures with 7 newly developed methods. The selection of the current methods is detailed in Volume 1 of this report, and the developement of the 7 new procedures is presentted in Volumes 2 through 7. While The primary emphasis is on deterioration associated with chloride-induced corrosion of reinforcing steel, all aspects of durability relative to concrete bridge components are addressed. The procedure is designed to be flexible and amenable to tailoring to suit the needs of the individual highway agency.

Corrosion of Steel in Concrete

Corrosion of Steel in Concrete
Author: John P. Broomfield
Publisher: CRC Press
Total Pages: 294
Release: 2006-12-07
Genre: Architecture
ISBN: 0203414608

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Corrosion of Steel in Concrete provides information on corrosion of steel in atmospherically exposed concrete structures and serves as a guide for those designing, constructing and maintaining buildings, bridges and all reinforced concrete structures. This new edition incorporates the new European standards as well as USA and other international standards. It also covers developments in galvanic and impressed current cathodic protection, new electrochemical techniques such as electro-osmosis, and stainless steel clad reinforcing bars. The corrosion of reinforcing steel in concrete is a major problem facing civil engineers and surveyors throughout the world today. There will always be a need to build structures in corrosive environments and it is therefore essential to address the problems that result. This is a book to educates about and forms a guide to the problems of corrosion, its causes and how to find solutions.

Reinforced Concrete Structural Reliability

Reinforced Concrete Structural Reliability
Author: Mohamed Abdallah El-Reedy, Ph.D
Publisher: CRC Press
Total Pages: 379
Release: 2012-12-15
Genre: Technology & Engineering
ISBN: 1439872031

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Structural engineers must focus on a structure’s continued safety throughout its service life. Reinforced Concrete Structural Reliability covers the methods that enable engineers to keep structures reliable during all project phases, and presents a practical exploration of up-to-date techniques for predicting the lifetime of a structure. The book also helps readers understand where the safety factors used come from and addresses the problems that arise from deviation from these factors. It also examines the question of what code is best to follow for a specific project: the American code, the British Standard, the Eurocode, or other local codes. The author devotes an entire chapter to practical statistics methods and probability theory used in structural and civil engineering, both important for calculating the probability of structural failure (reliability analysis). The text addresses the effects of time, environmental conditions, and loads to assess consequences on older structures as well as to calculate the probability of failure. It also presents the effects of steel bar corrosion and column corrosion, and precautions to consider along with guides for design. This book offers guidelines and tools to evaluate existing as well as new structures, providing all available methods and tests for assessing structures, including visual inspection and nondestructive testing for concrete strength. It also presents techniques for predicting the remaining service life of a structure, which can be used to determine whether to perform repairs or take other action. This practical guide helps readers to differentiate between and understand the philosophy of the various codes and standards, enabling them to work anywhere in the world. It will aid engineers at all levels working on projects from the design to the maintenance phase, increasing their grasp of structure behavior, codes and factors, and predicting service life.