
Time-Dependent Behaviour of Concrete Structures
CRC Press
1st Edition
Published on 12. December 2019
Book
Paperback/Softback
448 pages
978-0-367-86534-4 (ISBN)
Description
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.
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.
More details
Language
English
Place of publication
London
United Kingdom
Publishing group
Taylor & Francis Ltd
Target group
Professional and scholarly
Professional
Dimensions
Height: 246 mm
Width: 174 mm
Thickness: 24 mm
Weight
792 gr
ISBN-13
978-0-367-86534-4 (9780367865344)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Raymond Ian Gilbert | Gianluca Ranzi
Time-Dependent Behaviour of Concrete Structures
Book
09/2010
1st Edition
CRC Press
€252.55
Shipment within 15-20 days

Raymond Ian Gilbert | Gianluca Ranzi
Time-Dependent Behaviour of Concrete Structures
E-Book
09/2010
1st Edition
CRC Press
€80.49
Available for download

Raymond Ian Gilbert | Gianluca Ranzi
Time-Dependent Behaviour of Concrete Structures
E-Book
09/2010
CRC Press
€80.49
Available for download
Persons
Raymond Ian Gilbert is Professor of Civil Engineering at the University of New South Wales and currently holds an Australian Research Council Australian Professorial Fellowships. He has over 35 years experience in structural design and is a specialist in the analysis and design of reinforced and prestressed concrete structures.
Gianluca Ranzi is a Senior Lecturer of structural engineering at the University of Sydney, specialising in the analysis and design of concrete and composite steel-concrete structures.
Gianluca Ranzi is a Senior Lecturer of structural engineering at the University of Sydney, specialising in the analysis and design of concrete and composite steel-concrete structures.
Content
Time-Dependent Deformation. Material Properies. Design for Serviceability - Deflection and Crack Control. Uncracked Sections - Axial Loading. Uncracked Sections - Axial Force and Uniaxial Bending. Uncracked Sections - Axial Force and Biaxial Bending. Cracked Sections. Members and Structures. Stiffness Method and Finite Element Modelling. Appendix: Analytical Formulations - Euler-Bernoulli Beam Model.