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Reinforced Concrete with Worked Examples
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Reinforced Concrete with Worked Examples/ by Franco Angotti, Matteo Guiglia, Piero Marro, Maurizio Orlando.
Author:
Angotti, Franco.
other author:
Guiglia, Matteo.
Description:
XIX, 847 p. 477 illus., 50 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Concrete. -
Online resource:
https://doi.org/10.1007/978-3-030-92839-1
ISBN:
9783030928391
Reinforced Concrete with Worked Examples
Angotti, Franco.
Reinforced Concrete with Worked Examples
[electronic resource] /by Franco Angotti, Matteo Guiglia, Piero Marro, Maurizio Orlando. - 1st ed. 2022. - XIX, 847 p. 477 illus., 50 illus. in color.online resource.
General structural design criteria -- Materials -- Durability and cover to reinforcement -- Structural analysis -- Analysis of second order effects with axial load -- Prestressed concrete -- Ultimate limit state for bending with or without axial force -- Shear and torsion at ultimate limit state -- Punching shear -- Strut and tie models -- Serviceability limit states (SLS) -- Detailing of reinforcement and structural members for buildings -- Tables and Diagrams.
This textbook describes the design of reinforced and prestressed concrete structures according to the latest advances both in the field of materials, concrete and steel, and in the field of structural analysis. These advances have been included in current version of Eurocode 2, which is taken as reference. All subjects are presented starting from their theoretical bases and passing to corresponding EC2 formulations. A large part of the book is concerned with the most innovative EC2 parts, like nonlinear structural analyses, second-order effects, punching and strut-and-tie models. The textbook is equipped with numerous worked examples, useful for the reader who is not familiar with the design of reinforced and prestressed concrete structures by the Limit State Method. Examples have been chosen among the most frequent cases of the professional practice. Thanks to this structure, it can be of interest both to structural designers for their professional training and to students of engineering and architecture schools for their studies. The volume contains twelve chapters, which follow the same structure of EC2, except for chapter 6 (dealing with prestressed concrete structures), which does not match any chapter of EC2, as prestressed concrete is considered in EC2 as a particular case of reinforced concrete, and corresponding formulations are shed over different chapters.
ISBN: 9783030928391
Standard No.: 10.1007/978-3-030-92839-1doiSubjects--Topical Terms:
867676
Concrete.
LC Class. No.: TA439-446
Dewey Class. No.: 691.3
Reinforced Concrete with Worked Examples
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General structural design criteria -- Materials -- Durability and cover to reinforcement -- Structural analysis -- Analysis of second order effects with axial load -- Prestressed concrete -- Ultimate limit state for bending with or without axial force -- Shear and torsion at ultimate limit state -- Punching shear -- Strut and tie models -- Serviceability limit states (SLS) -- Detailing of reinforcement and structural members for buildings -- Tables and Diagrams.
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This textbook describes the design of reinforced and prestressed concrete structures according to the latest advances both in the field of materials, concrete and steel, and in the field of structural analysis. These advances have been included in current version of Eurocode 2, which is taken as reference. All subjects are presented starting from their theoretical bases and passing to corresponding EC2 formulations. A large part of the book is concerned with the most innovative EC2 parts, like nonlinear structural analyses, second-order effects, punching and strut-and-tie models. The textbook is equipped with numerous worked examples, useful for the reader who is not familiar with the design of reinforced and prestressed concrete structures by the Limit State Method. Examples have been chosen among the most frequent cases of the professional practice. Thanks to this structure, it can be of interest both to structural designers for their professional training and to students of engineering and architecture schools for their studies. The volume contains twelve chapters, which follow the same structure of EC2, except for chapter 6 (dealing with prestressed concrete structures), which does not match any chapter of EC2, as prestressed concrete is considered in EC2 as a particular case of reinforced concrete, and corresponding formulations are shed over different chapters.
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