Direct Design Of Reinforced Concrete Structures Using Nonelastic Stress Fields PDF Download

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Design of Concrete Structures with Stress Fields

Design of Concrete Structures with Stress Fields
Author: Aurello Muttoni
Publisher: Birkhäuser
Total Pages: 150
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 3034890478

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17 2 STRESS FIELDS FOR SIMPLE STRUCTURES 2. 1 INTRODUCTION In this chapter the behavior and strength of simple structures made of rein forced or prestressed concrete is investigated with the aid of stress fields. In particular, the webs and flanges of beams, simple walls, brackets, bracing beams and joints of frames are investigated. By this means, the majority of design cases are already covered. In reality, all structural components are three-dimensional. Here, however, components are considered either directly as two-dimensional plate elements (i. e. the plane stress condition with no variation of stress over the thickness of the element) or they are subdivided into several plates. Since two-dimensional structural elements are statically redundant, it is pOSSible for a particular loading to be in equilibrium with many (theoretically an infinite number of) stress states. If the lower bound method of the theory of plasticity is employed, then an admissible stress field or any combination of such stress fields may be selected. In chapter 4 it is shown that this method is suitable for the design of reinforced concrete structures, and the consequence of the choice of the final structural system on the structural behavior is dealt with in detail. The first cases of the use of this method date back to Ritter [6] and Morsch [4], who already at the beginning of the century investigated the resultants of the internal stresses by means of truss models.


Principles of Reinforced Concrete Design

Principles of Reinforced Concrete Design
Author: Mete A. Sozen
Publisher: CRC Press
Total Pages: 300
Release: 2014-07-14
Genre: Technology & Engineering
ISBN: 1482231484

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Encouraging creative uses of reinforced concrete, Principles of Reinforced Concrete Design draws a clear distinction between fundamentals and professional consensus. This text presents a mixture of fundamentals along with practical methods. It provides the fundamental concepts required for designing reinforced concrete (RC) structures, emphasizing principles based on mechanics, experience, and experimentation, while encouraging practitioners to consult their local building codes. The book presents design choices that fall in line with the boundaries defined by professional consensus (building codes), and provides reference material outlining the design criteria contained in building codes. It includes applications for both building and bridge structural design, and it is applicable worldwide, as it is not dependent upon any particular codes. Contains concise coverage that can be taught in one semester Underscores the fundamental principles of behavior Provides students with an understanding of the principles upon which codes are based Assists in navigating the labyrinth of ever-changing codes Fosters an inherent understanding of design The text also provides a brief history of reinforced concrete. While the initial attraction for using reinforced concrete in building construction has been attributed to its fire resistance, its increase in popularity was also due to the creativity of engineers who kept extending its limits of application. Along with height achievement, reinforced concrete gained momentum by providing convenience, plasticity, and low-cost economic appeal. Principles of Reinforced Concrete Design provides undergraduate students with the fundamentals of mechanics and direct observation, as well as the concepts required to design reinforced concrete (RC) structures, and applies to both building and bridge structural design.


Non-Linear Mechanics of Reinforced Concrete

Non-Linear Mechanics of Reinforced Concrete
Author: K. Maekawa
Publisher: CRC Press
Total Pages: 768
Release: 2003-09-02
Genre: Architecture
ISBN: 0203302885

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This book describes the application of nonlinear static and dynamic analysis for the design, maintenance and seismic strengthening of reinforced concrete structures. The latest structural and RC constitutive modelling techniques are described in detail, with particular attention given to multi-dimensional cracking and damage assessment, and their practical applications for performance-based design. Other subjects covered include 2D/3D analysis techniques, bond and tension stiffness, shear transfer, compression and confinement. It can be used in conjunction with WCOMD and COM3 software Nonlinear Mechanics of Reinforced Concrete presents a practical methodology for structural engineers, graduate students and researchers concerned with the design and maintenance of concrete structures.


Bridge Assessment Management and Design

Bridge Assessment Management and Design
Author: B. Barr
Publisher: Elsevier Publishing Company
Total Pages: 532
Release: 1994
Genre: Technology & Engineering
ISBN:

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This text presents the current practices and theory of bridge design. New methods of construction, innovation in design and aesthetics are considered here, and there is an up-to-date review of work being carried out around the world to extend the working life of bridges.


Design of Concrete Structures with Stress Fields

Design of Concrete Structures with Stress Fields
Author: Aurelio Muttoni
Publisher: Birkhauser
Total Pages: 143
Release: 1997-01-01
Genre: Reinforced concrete construction
ISBN: 9780817654917

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Developments in Computational Engineering Mechanics

Developments in Computational Engineering Mechanics
Author: B. H. V. Topping
Publisher: Hyperion Books
Total Pages: 334
Release: 1993
Genre: Technology & Engineering
ISBN:

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Included in this volume are a selection of papers on developments in computational engineering mechanics. The papers were presented at the Fifth International Conference on Civil and Structural Engineering Computing held 17-19 August 1993, Edinburgh.


Developments in Structural Engineering Computing

Developments in Structural Engineering Computing
Author: B. H. V. Topping
Publisher: Hyperion Books
Total Pages: 490
Release: 1993
Genre: Technology & Engineering
ISBN:

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Included in this volume are a selection of papers on computing and structural engineering. The papers were presented at the Fifth International Conference on Civil and Structural Engineering held 17-19 August 1993, Edinburgh.