[PDF] Guide For Modeling And Calculating Shrinkage And Creep In Hardened Concrete - eBooks Review

Guide For Modeling And Calculating Shrinkage And Creep In Hardened Concrete


Guide For Modeling And Calculating Shrinkage And Creep In Hardened Concrete
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Guide For Modeling And Calculating Shrinkage And Creep In Hardened Concrete


Guide For Modeling And Calculating Shrinkage And Creep In Hardened Concrete
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Author :
language : en
Publisher:
Release Date : 2008-01-01

Guide For Modeling And Calculating Shrinkage And Creep In Hardened Concrete written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008-01-01 with Concrete categories.




Creep Shrinkage And Durability Mechanics Of Concrete And Concrete Structures Two Volume Set


Creep Shrinkage And Durability Mechanics Of Concrete And Concrete Structures Two Volume Set
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Author : Tada-aki Tanabe
language : en
Publisher: CRC Press
Release Date : 2008-09-01

Creep Shrinkage And Durability Mechanics Of Concrete And Concrete Structures Two Volume Set written by Tada-aki Tanabe and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008-09-01 with Technology & Engineering categories.


CREEP, SHRINKAGE AND DURABILITY MECHANICS OF CONCRETE AND CONCRETE STRUCTURES contains the keynote lectures, technical reports and contributed papers presented at the Eighth International Conference on Creep, Shrinkage and Durability of Concrete and Concrete Structures (CONCREEP8, Ise-shima, Japan, 30 September - 2 October 2008). The topics covered



Time Dependent Behaviour Of Concrete Structures


Time Dependent Behaviour Of Concrete Structures
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Author : Raymond Ian Gilbert
language : en
Publisher: CRC Press
Release Date : 2010-09-21

Time Dependent Behaviour Of Concrete Structures written by Raymond Ian Gilbert and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010-09-21 with Technology & Engineering categories.


Serviceability failures of concrete structures involving excessive cracking or deflection are relatively common, even in structures that comply with code requirements. This is often as a result of a failure to adequately account for the time-dependent deformations of concrete in the design of the structure. The serviceability provisions embodied in codes of practice are relatively crude and, in some situations, unreliable and do not adequately model the in-service behaviour of structures. In particular, they fail to adequately account for the effects of creep and shrinkage of the concrete. Design for serviceability is complicated by the non-linear and inelastic behaviour of concrete at service loads. Providing detailed information, this book helps engineers to rationally predict the time-varying deformation of concrete structures under typical in-service conditions. It gives analytical methods to help anticipate time-dependent cracking, the gradual change in tension stiffening with time, creep induced deformations and the load independent strains caused by shrinkage and temperature changes. The calculation procedures are illustrated with many worked examples. A vital guide for practising engineers and advanced students of structural engineering on the design of concrete structures for serviceability and provides a penetrating insight into the time-dependent behaviour of reinforced and prestressed concrete structures.



Report On Factors Affecting Shrinkage And Creep Of Hardened Concrete


Report On Factors Affecting Shrinkage And Creep Of Hardened Concrete
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Author : ACI Committee 209--Creep and Shrinkage
language : en
Publisher:
Release Date : 2005

Report On Factors Affecting Shrinkage And Creep Of Hardened Concrete written by ACI Committee 209--Creep and Shrinkage and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2005 with Technology & Engineering categories.




Mathematical Modeling Of Creep And Shrinkage Of Concrete


Mathematical Modeling Of Creep And Shrinkage Of Concrete
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Author : Z. P. Bažant
language : en
Publisher:
Release Date : 1988

Mathematical Modeling Of Creep And Shrinkage Of Concrete written by Z. P. Bažant and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1988 with Mathematics categories.


Based on the proceedings of the Fourth International Union of Testing and Research Laboratories in Materials and Structures (RILEM) Symposium held at Northwestern University, August 1986. Contributions reflect the state of the art and address the major concerns related to long-term serviceability of concrete construction.



Advanced Chemical And Creep Modeling For Alkali Aggregate Reaction In Concrete


Advanced Chemical And Creep Modeling For Alkali Aggregate Reaction In Concrete
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Author : Fernando A. N. Silva
language : en
Publisher: Springer Nature
Release Date :

Advanced Chemical And Creep Modeling For Alkali Aggregate Reaction In Concrete written by Fernando A. N. Silva and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on with categories.




Structural Concrete Volume 2


Structural Concrete Volume 2
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Author : fib Fédération internationale du béton
language : en
Publisher: fib Fédération internationale du béton
Release Date : 2010-01-01

Structural Concrete Volume 2 written by fib Fédération internationale du béton and has been published by fib Fédération internationale du béton this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010-01-01 with Technology & Engineering categories.


The second 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 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.



Computational Modelling Of Concrete Structures


Computational Modelling Of Concrete Structures
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Author : Nenad Bicanic
language : en
Publisher: CRC Press
Release Date : 2010-02-24

Computational Modelling Of Concrete Structures written by Nenad Bicanic and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010-02-24 with Technology & Engineering categories.


Since 1984 the EURO-C conference series (Split 1984, Zell am See 1990, Innsbruck 1994, Badgastein 1998, St Johann im Pongau 2003, Mayrhofen 2006, Schladming 2010) has provided a forum for academic discussion of the latest theoretical, algorithmic and modelling developments associated with computational simulations of concrete and concrete structure



Creep And Hygrothermal Effects In Concrete Structures


Creep And Hygrothermal Effects In Concrete Structures
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Author : Zdeněk P. Bažant
language : en
Publisher: Springer
Release Date : 2018-01-17

Creep And Hygrothermal Effects In Concrete Structures written by Zdeněk P. Bažant and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-01-17 with Technology & Engineering categories.


This comprehensive treatise covers in detail practical methods of analysis as well as advanced mathematical models for structures highly sensitive to creep and shrinkage. Effective computational algorithms for century-long creep effects in structures, moisture diffusion and high temperature effects are presented. The main design codes and recommendations (including RILEM B3 and B4) are critically compared. Statistical uncertainty of century-long predictions is analyzed and its reduction by extrapolation is discussed, with emphasis on updating based on short-time tests and on long-term measurements on existing structures. Testing methods and the statistics of large randomly collected databases are critically appraised and improvements of predictions of multi-decade relaxation of prestressing steel, cyclic creep in bridges, cracking damage, etc., are demonstrated. Important research directions, such as nanomechanical and probabilistic modeling, are identified, and the need for separating the long-lasting autogenous shrinkage of modern concretes from the creep and drying shrinkage data and introducing it into practical prediction models is emphasized. All the results are derived mathematically and justified as much as possible by extensive test data. The theoretical background in linear viscoelasticity with aging is covered in detail. The didactic style makes the book suitable as a textbook. Everything is properly explained, step by step, with a wealth of application examples as well as simple illustrations of the basic phenomena which could alternate as homeworks or exams. The book is of interest to practicing engineers, researchers, educators and graduate students.



Design Of Prestressed Concrete To Eurocode 2 Second Edition


Design Of Prestressed Concrete To Eurocode 2 Second Edition
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Author : Raymond Ian Gilbert
language : en
Publisher: CRC Press
Release Date : 2017-01-27

Design Of Prestressed Concrete To Eurocode 2 Second Edition written by Raymond Ian Gilbert and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-01-27 with Technology & Engineering categories.


The design of structures in general, and prestressed concrete structures in particular, requires considerably more information than is contained in building codes. A sound understanding of structural behaviour at all stages of loading is essential. This textbook presents a detailed description and explanation of the behaviour of prestressed concrete members and structures both at service loads and at ultimate loads and, in doing so, provide a comprehensive and up-to-date guide to structural design. Much of the text is based on first principles and relies only on the principles of mechanics and the properties of concrete and steel, with numerous worked examples. However, where the design requirements are code specific, this book refers to the provisions of Eurocode 2: Design of Concrete Structures and, where possible, the notation is the same as in Eurocode 2. A parallel volume is written to the Australian Standard for Concrete Structures AS3600-2009. The text runs from an introduction to the fundamentals to in-depth treatments of more advanced topics in modern prestressed concrete structures. It suits senior undergraduate and graduate students and also practising engineers who want comprehensive introduction to the design of prestressed concrete structures. It retains the clear and concise explanations and the easy-to-read style of the first edition, but the content has been extensively re-organised and considerably expanded and updated. New chapters cover design procedures, actions and loads; prestressing systems and construction requirements; connections and detailing; and design concepts for prestressed concrete bridges. The topic of serviceability is developed extensively throughout. All the authors have been researching and teaching the behaviour and design of prestressed concrete structures for over thirty-five years and the proposed new edition of the book reflects this wealth of experience. The work has also gained much from Professor Gilbert active and long-time involvement in the development of standards for concrete buildings and concrete bridges.