Strength and Deformations of Structural Concrete Subjected to In Plane Shear and Normal Forces

Strength and Deformations of Structural Concrete Subjected to In Plane Shear and Normal Forces
Author: Walter Kaufmann
Publsiher: Birkhäuser
Total Pages: 159
Release: 2013-12-11
Genre: Technology & Engineering
ISBN: 9783034876124

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The present doctoral thesis was developed within the framework of the research project "Deformation Capacity of Structural Concrete". This project aims at developing a consistent and experimentally verified theory of the deformation capacity of structural concrete. Previous work included the development of a theoretical model, the so-called Tension Chord Model, which allows a comprehensive description of the load-deforma tion behaviour of tension members in non-prestressed and prestressed concrete struc tures. The present work focuses on a new theoretical model, the so-called Cracked Mem brane Model. For members subjected to in-plane forces this new model combines the ba sic concepts of the modified compression field theory and the tension chord model. Crack spacings and tension stiffening effects in cracked membranes are determined from first principles and the link to plasticity theory methods is maintained since equilibrium conditions are formulated in terms of stresses at the cracks rather than average stresses between the cracks. The research project "Deformation Capacity of Structural Concrete" has been funded by the Swiss National Science Foundation and the Association of the Swiss Cement Pro ducers. This support is gratefully acknowledged. Zurich, July 1998 Prof. Dr. Peter Marti Abstract This thesis aims at contributing to a better understanding of the load-carrying and defor mational behaviour of structural concrete subjected to in-plane shear and normal forces.

Limit Analysis of Reinforced Concrete Slabs

Limit Analysis of Reinforced Concrete Slabs
Author: Joost Meyboom
Publsiher: vdf Hochschulverlag AG
Total Pages: 128
Release: 2002
Genre: Technology & Engineering
ISBN: 3728128767

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Proceedings fib Symposium in Prague Vol1 Czech Republic

Proceedings fib Symposium in Prague Vol1 Czech Republic
Author: FIB – International Federation for Structural Concrete
Publsiher: FIB - Féd. Int. du Béton
Total Pages: 369
Release: 1999-10-01
Genre: Technology & Engineering
ISBN: 9182736450XXX

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Reinforced Concrete Slabs Compatibility Limit Design

Reinforced Concrete Slabs   Compatibility Limit Design
Author: Mario Nicola Monotti
Publsiher: vdf Hochschulverlag AG
Total Pages: 102
Release: 2004
Genre: Technology & Engineering
ISBN: 3728129852

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Computational Modelling of Concrete Structures

Computational Modelling of Concrete Structures
Author: Günther Meschke,Bernhard Pichler,Jan G. Rots
Publsiher: CRC Press
Total Pages: 1034
Release: 2018-01-31
Genre: Technology & Engineering
ISBN: 9781351726764

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The EURO-C conference series (Split 1984, Zell am See 1990, Innsbruck 1994, Badgastein 1998, St. Johann im Pongau 2003, Mayrhofen 2006, Schladming 2010, St. Anton am Arlberg 2014, and Bad Hofgastein 2018) brings together researchers and practising engineers concerned with theoretical, algorithmic and validation aspects associated with computational simulations of concrete and concrete structures. Computational Modelling of Concrete Structures reviews and discusses research advancements and the applicability and robustness of methods and models for reliable analysis of complex concrete, reinforced concrete and pre-stressed concrete structures in engineering practice. The contributions cover both computational mechanics and computational modelling aspects of the analysis and design of concrete and concrete structures: Multi-scale cement and concrete research: experiments and modelling Aging concrete: from very early ages to decades-long durability Advances in material modelling of plain concrete Analysis of reinforced concrete structures Steel-concrete interaction, fibre-reinforced concrete, and masonry Dynamic behaviour: from seismic retrofit to impact simulation Computational Modelling of Concrete Structures is of special interest to academics and researchers in computational concrete mechanics, as well as industry experts in complex nonlinear simulations of concrete structures.

Fibre Reinforced Concrete Improvements and Innovations

Fibre Reinforced Concrete  Improvements and Innovations
Author: Pedro Serna,Aitor Llano-Torre,José R. Martí-Vargas,Juan Navarro-Gregori
Publsiher: Springer Nature
Total Pages: 1180
Release: 2020-11-05
Genre: Technology & Engineering
ISBN: 9783030584825

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This volume highlights the latest advances, innovations, and applications in the field of fibre reinforced concrete (FRC) and discusses a diverse range of topics concerning FRC: rheology and early-age properties, mechanical properties, codes and standards, long-term properties, durability, analytical and numerical models, quality control, structural and Industrial applications, smart FRC’s, nanotechnologies related to FRC, textile reinforced concrete, structural design and UHPFRC. The contributions present improved traditional and new ideas that will open novel research directions and foster multidisciplinary collaboration between different specialists. Although the symposium was postponed, the book gathers peer-reviewed papers selected in 2020 for the RILEM-fib International Symposium on Fibre Reinforced Concrete (BEFIB).

3rd PhD Symposium in Vienna Austria Vol2

3rd PhD Symposium in Vienna Austria Vol2
Author: FIB – International Federation for Structural Concrete
Publsiher: FIB - Féd. Int. du Béton
Total Pages: 493
Release: 2000-10-01
Genre: Technology & Engineering
ISBN: 9182736450XXX

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Concrete Structures Stresses and Deformations

Concrete Structures  Stresses and Deformations
Author: Amin Ghali,R Favre
Publsiher: CRC Press
Total Pages: 468
Release: 1994-10-13
Genre: Architecture
ISBN: 041917740X

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Concrete structures must be designed both to be safe against failure and to perform satisfactorily in use. This book is written for practising engineers, students and designers and concentrates on design methods for checking the main serviceability requirements of control of deflections and cracking in reinforced and prestressed concrete structures.