A Conceptual Model for Designing Recycled Aggregate Concrete for Structural Applications
Authors: Pepe, Marco
Free Preview- Nominated as an outstanding PhD thesis by University of Salerno, Italy
- Proposes a theoretical method for predicting the compressive strength of Recycled Aggregate Concrete (RAC)
- Includes an extended experimental validation of the method, based on data collected in this and other studies
- Reports on important advances made in the EU-funded project on Environmentally-friendly solutions for Concrete with Recycled and natural components
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- About this book
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This book reports on the physical and mechanical characterization of Recycled Aggregate Concrete (RAC), produced through a partial-to-total replacement of ordinary aggregates with what have been dubbed Recycled Concrete Aggregates (RCAs). It proposes a theoretical framework for understanding the relationships between RCAs and RCA, and for predicting the resulting behavior of RAC. The book demonstrates that in the case of RAC two additional parameters have to be taken into account than with ordinary aggregates, due to the composite nature and higher porosity of RCAs. By extending Abrams’ Law for Recycled Aggregate Concrete, it represents a first step in the formulation of a general model for predicting the properties of RAC. The theoretical approach presented here addresses an important gap in the literature and is expected to stimulate new research on the use of this more sustainable form of concrete in structural applications.
- Table of contents (8 chapters)
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Introduction
Pages 1-5
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Concrete Industry: Waste Generation and Environmental Concerns
Pages 7-16
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Regulatory Environment and Guidelines for RACs
Pages 17-25
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Recycled Concrete Aggregates
Pages 27-54
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Recycled Aggregate Concretes
Pages 55-89
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Table of contents (8 chapters)
- Download Sample pages 2 PDF (647 KB)
- Download Table of contents PDF (111.2 KB)
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Bibliographic Information
- Bibliographic Information
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- Book Title
- A Conceptual Model for Designing Recycled Aggregate Concrete for Structural Applications
- Authors
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- Marco Pepe
- Series Title
- Springer Theses
- Copyright
- 2015
- Publisher
- Springer International Publishing
- Copyright Holder
- Springer International Publishing Switzerland
- eBook ISBN
- 978-3-319-26473-8
- DOI
- 10.1007/978-3-319-26473-8
- Hardcover ISBN
- 978-3-319-26472-1
- Softcover ISBN
- 978-3-319-79959-9
- Series ISSN
- 2190-5053
- Edition Number
- 1
- Number of Pages
- XVII, 167
- Number of Illustrations
- 91 b/w illustrations, 27 illustrations in colour
- Topics