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Punching of Structural Concrete Slabs

Punching of Structural Concrete Slabs
Author: fib Fédération internationale du béton
Publisher: fib Fédération internationale du béton
Total Pages: 314
Release: 2001-01-01
Genre: Technology & Engineering
ISBN: 2883940525

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Punching is considered to be one of the most difficult problems in structural concrete design and mechanical models or theoretical analyses were developed rather late in the history of concrete research attempts. This fib Bulletin reviews the development of design models and theoretical analyses since the CEB Bulletin 168 Punching Shear in Reinforced Concrete - State-of-the-Art Report published in 1985. The role of the concrete tensile strength was specially addressed. In this respect the present bulletin is also following-up the CEB Bulletin 237 Concrete Tension and Size Effects - Utilisation of concrete tension in structural concrete design and relevance of size effect - Contributions from CEB Task Group 2.7 published in 1997. Apart from new theoretical developments a comprehensive databank for comparisons with experimental evidence is included. About 400 punching tests were critically reviewed and evaluated in a consistent manner. This is thought to be the first step towards a generally agreed selection of reliable tests. The evident value of such a data bank is illustrated by comparisons carried out between the data and some of the analytical proposals as well as empirical code formulas. List of contents : (1) Introduction, (2) Code equations, (3) Mechanical models for punching, (4) New developments for mechanical models, (5) Numerical investigations, (7) Comparison of mechanical models and test results of slabs without shear reinforcement, (8) Comparison of code rules and tests of flat slabs without shear reinforcement, (9) Comparison of codes, models and tests of flat slabs with shear reinforcement, (10) Experimental investigations, (11) Summary and conclusions, References, Appendices : (I) Databank on slabs without shear reinforcement, (II) Databank on slabs with shear reinforcement, (III) Comparison of test data with code rules, (IV) Comparison of test data with selected models, (V) Notations.


Punching shear of structural concrete slabs

Punching shear of structural concrete slabs
Author: FIB - Féd. Int. du Béton
Publisher: FIB - Féd. Int. du Béton
Total Pages: 396
Release: 2017
Genre: Technology & Engineering
ISBN: 2883941211

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fib Bulletin 81 reports the latest information available to researchers and practitioners on the analysis, design and experimental evidence of punching shear of structural concrete slabs. It follows previous efforts by the International Federation for Structural Concrete (fib) and its predecessor the Euro-International Committee for Concrete (CEB), through CEB Bulletin 168, Punching Shear in Reinforced Concrete (1985) and fibBulletin 12, Punching of structural concrete slabs (2001), and an international symposium sponsored by the punching shear subcommittee of ACI Committee 445 (Shear and Torsion) and held in Kansas City, Mo., USA, in 2005. This bulletin contains 18 papers that were presented in three sessions as part of an international symposium held in Philadelphia, Pa., USA, on October 25, 2016. The symposium was co-organized by the punching shear sub-committee of ACI 445 and by fib Working Party 2.2.3 (Punching and Shear in Slabs) with the objectives of not only disseminating information on this important design subject but also promoting harmonization among the various design theories and treatment of key aspects of punching shear design. The papers are organized in the same order they were presented in the symposium. The symposium honored Professor Emeritus Neil M. Hawkins (University of Illinois at Urbana-Champaign, USA), whose contributions through the years in the field of punching shear of structural concrete slabs have been paramount. The papers cover key aspects related to punching shear of structural concrete slabs under different loading conditions, the study of size effect on punching capacity of slabs, the effect of slab reinforcement ratio on the response and failure mode of slabs, without and with shear reinforcement, and its implications for the design and formulation in codes of practice, an examination of different analytical tools to predict the punching shear response of slabs, the study of the post-punching response of concrete slabs, the evaluation of design provisions in modern codes based on recent experimental evidence and new punching shear theories, and an overview of the combined efforts undertaken jointly by ACI 445 and fib WP 2.2.3 to generate test result databanks for the evaluation and calibration of punching shear design recommendations in North American and international codes of practice.


The Mechanics of Punching in Reinforced Concrete Slabs and Footings Without Shear Reinforcement

The Mechanics of Punching in Reinforced Concrete Slabs and Footings Without Shear Reinforcement
Author: João Tiago Ramos Bernardo de Santa Rita Simões
Publisher:
Total Pages: 201
Release: 2018
Genre:
ISBN:

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Mots-clés de l'auteur: structural concrete ; punching shear strength ; experimental programme ; mechanical model ; limit analysis ; Critical Shear Crack Theory (CSCT) ; failure criterion ; footings ; slabs ; closed-form design expressions.


Punching of Concrete Slabs

Punching of Concrete Slabs
Author: Jan L. Andersson
Publisher:
Total Pages: 16
Release: 1964
Genre: Concrete slabs
ISBN:

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Punching shear in reinforced concrete state of the art report

Punching shear in reinforced concrete state of the art report
Author: FIB – International Federation for Structural Concrete
Publisher: FIB - International Federation for Structural Concrete
Total Pages: 242
Release: 1985-01-01
Genre: Technology & Engineering
ISBN:

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Concrete Slabs

Concrete Slabs
Author: L.A. Clarke
Publisher: CRC Press
Total Pages: 586
Release: 1984-06-26
Genre: Architecture
ISBN: 9780853342540

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This book provides an up-to-date description of the latest procedures for analysis and design of reinforced concrete slabs. It explains the yield line method of analysis and Hillerborg's strip method of design, and discusses the basic North American and British practices.