LIMIT STATE DESIGN OF REINFORCED CONCRETE

LIMIT STATE DESIGN OF REINFORCED CONCRETE
Author: P. C. VARGHESE
Publisher: PHI Learning Pvt. Ltd.
Total Pages: 577
Release: 2008-09-23
Genre: Technology & Engineering
ISBN: 8120320395

This substantially revised second edition takes into account the provisions of the revised Indian Code of practice for Plain and Reinforced Concrete IS 456 : 2000. It also provides additional data on detailing of steel to make the book more useful to practicing engineers. The chapter on Limit State of Durability for Environment has been completely revised and the new provisions of the code such as those for design for shear in reinforced concrete, rules for shearing main steel in slabs, lateral steel in columns, and stirrups in beams have been explained in detail in the new edition. This comprehensive and systematically organized book is intended for undergraduate students of Civil Engineering, covering the first course on Reinforced Concrete Design and as a reference for the practicing engineers. Besides covering IS 456 : 2000, the book also deals with the British and US Codes. Advanced topics of IS 456 : 2000 have been discussed in the companion volume Advanced Reinforced Concrete Design (also published by Prentice-Hall of India). The two books together cover all the topics in IS 456 : 2000 and many other topics which are so important in modern methods of design of reinforced concrete.

Reinforced Concrete

Reinforced Concrete
Author: B.S. Choo
Publisher: CRC Press
Total Pages: 479
Release: 2018-10-08
Genre: Architecture
ISBN: 1482266989

This new edition of a highly practical text gives a detailed presentation of the design of common reinforced concrete structures to limit state theory in accordance with BS 8110.

Compressive Force-Path Method

Compressive Force-Path Method
Author: Michael D Kotsovos
Publisher: Springer Science & Business Media
Total Pages: 230
Release: 2013-10-04
Genre: Technology & Engineering
ISBN: 3319004883

This book presents a method which simplifies and unifies the design of reinforced concrete (RC) structures and is applicable to any structural element under both normal and seismic loading conditions. The proposed method has a sound theoretical basis and is expressed in a unified form applicable to all structural members, as well as their connections. It is applied in practice through the use of simple failure criteria derived from first principles without the need for calibration through the use of experimental data. The method is capable of predicting not only load-carrying capacity but also the locations and modes of failure, as well as safeguarding the structural performance code requirements. In this book, the concepts underlying the method are first presented for the case of simply supported RC beams. The application of the method is progressively extended so as to cover all common structural elements. For each structural element considered, evidence of the validity of the proposed method is presented together with design examples and comparisons with current code specifications. The method has been found to produce design solutions which satisfy the seismic performance requirements of current codes in all cases investigated to date, including structural members such as beams, columns, and walls, beam-to-beam or column-to-column connections, and beam-to-column joints.

Fundamentals of Reinforced Concrete

Fundamentals of Reinforced Concrete
Author: NC Sinha | SK Roy
Publisher: S. Chand Publishing
Total Pages: 1168
Release: 2007
Genre: Technology & Engineering
ISBN: 8121901278

This book on Reinforced Concrete has been comprehensively revised with a view to make it more suitable for the updated syllabus of various Technical Institutes and Engineering Colleges of different Universities.

Reinforced Concrete

Reinforced Concrete
Author: James Grierson MacGregor
Publisher: Prentice Hall
Total Pages: 939
Release: 1997
Genre: Reinforced concrete
ISBN: 9780136139850

Based on the 1995 edition of the American Concrete Institute Building Code, this text explains the theory and practice of reinforced concrete design in a systematic and clear fashion, with an abundance of step-by-step worked examples, illustrations, and photographs. The focus is on preparing students to make the many judgment decisions required in reinforced concrete design, and reflects the author's experience as both a teacher of reinforced concrete design and as a member of various code committees. This edition provides new, revised and expanded coverage of the following topics: core testing and durability; shrinkage and creep; bases the maximum steel ratio and the value of the factor on Appendix B of ACI318-95; composite concrete beams; strut-and-tie models; dapped ends and T-beam flanges. It also expands the discussion of STMs and adds new examples in SI units.

Structural Concrete

Structural Concrete
Author: M. D. Kotsovos
Publisher: Thomas Telford
Total Pages: 568
Release: 1995
Genre: Mathematics
ISBN: 9780727720276

Shows the unifying generality of the proposed approach and the reliability of the ensuing computer package, for which the sole input is the specified cylinder strength of concrete and the yield is the stress of steel. This book offers an understanding of structural concrete behaviour, and illustrates the revision required for improving methods.