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Steel Fiber Reinforced Concrete

Author : Harvinder Singh
Publisher : Springer
Page : 181 pages
File Size : 36,20 MB
Release : 2016-10-26
Category : Technology & Engineering
ISBN : 981102507X

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This book discusses design aspects of steel fiber-reinforced concrete (SFRC) members, including the behavior of the SFRC and its modeling. It also examines the effect of various parameters governing the response of SFRC members in detail. Unlike other publications available in the form of guidelines, which mainly describe design methods based on experimental results, it describes the basic concepts and principles of designing structural members using SFRC as a structural material, predominantly subjected to flexure and shear. Although applications to special structures, such as bridges, retaining walls, tanks and silos are not specifically covered, the fundamental design concepts remain the same and can easily be extended to these elements. It introduces the principles and related theories for predicting the role of steel fibers in reinforcing concrete members concisely and logically, and presents various material models to predict the response of SFRC members in detail. These are then gradually extended to develop an analytical flexural model for the analysis and design of SFRC members. The lack of such a discussion is a major hindrance to the adoption of SFRC as a structural material in routine design practice. This book helps users appraise the role of fiber as reinforcement in concrete members used alone and/or along with conventional rebars. Applications to singly and doubly reinforced beams and slabs are illustrated with examples, using both SFRC and conventional reinforced concrete as a structural material. The influence of the addition of steel fibers on various mechanical properties of the SFRC members is discussed in detail, which is invaluable in helping designers and engineers create optimum designs. Lastly, it describes the generally accepted methods for specifying the steel fibers at the site along with the SFRC mixing methods, storage and transport and explains in detail methods to validate the adopted design. This book is useful to practicing engineers, researchers, and students.

Steel Fibre Reinforced Concrete

Author : Bernhard Maidl
Publisher : Ernst & Sohn
Page : 292 pages
File Size : 14,47 MB
Release : 1995-07-14
Category : Technology & Engineering
ISBN : 9783433012888

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Steel fibre reinforced concrete is a material with guaranteed tensile strength, outstanding working capacity under static and dynamic loads and a technically effective crack distribution. This building material lends itself therefore to numerous possibilities of application in structural engineering. This book covers fibre types, concrete composition, properties and areas of application of steel fibre reinforced concrete. Particular attention is given to tunneling, mining, other fields of geotechnics, and structural repair. The book also presents design rules and existing regulations, as well as equipment and methods for the installation of the material. In addition, it examines cost considerations and economic feasibility, and provides an outlook on future development in this field. The examples given in the book facilitate training in this field.

Tailor Made Concrete Structures

Author : Joost C. Walraven
Publisher : CRC Press
Page : 316 pages
File Size : 18,25 MB
Release : 2008-05-01
Category : Technology & Engineering
ISBN : 1439828415

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In recent years knowledge of concrete and concrete structures has increased, as has its applications. New types of concrete challenged scientists and engineers, and ecological constraints encouraged the implementation of life cycle design of concrete structures, moving the focus more and more to maintenance and uprating of structures. And since bui

Fibre Reinforced Concrete: Improvements and Innovations II

Author : Pedro Serna
Publisher : Springer Nature
Page : 994 pages
File Size : 24,95 MB
Release : 2021-09-04
Category : Technology & Engineering
ISBN : 303083719X

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This volume highlights the latest advances, innovations, and applications in the field of fibre-reinforced concrete (FRC), as presented by scientists and engineers at the RILEM-fib X International Symposium on Fibre Reinforced Concrete (BEFIB), held in Valencia, Spain, on September 20-22, 2021. It discusses a diverse range of topics concerning FRC: technological aspects, nanotechnologies related with FRC, mechanical properties, long-term properties, analytical and numerical models, structural design, codes and standards, quality control, case studies, Textile-Reinforced Concrete, Geopolymers and UHPFRC. After the symposium postponement in 2020, this new volume concludes the publication of the research works and knowledge of FRC in the frame of BEFIB from 2020 to 2021 with the successful celebration of the hybrid symposium BEFIB 2021. The contributions present traditional and new ideas that will open novel research directions and foster multidisciplinary collaboration between different specialists.

Numerical Modeling of Concrete Cracking

Author : Guenter Hofstetter
Publisher : Springer Science & Business Media
Page : 330 pages
File Size : 36,75 MB
Release : 2011-10-08
Category : Technology & Engineering
ISBN : 3709108977

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The book presents the underlying theories of the different approaches for modeling cracking of concrete and provides a critical survey of the state-of-the-art in computational concrete mechanics. It covers a broad spectrum of topics related to modeling of cracks, including continuum-based and discrete crack models, meso-scale models, advanced discretization strategies to capture evolving cracks based on the concept of finite elements with embedded discontinuities and on the extended finite element method, and extensions to coupled problems such a hygro-mechanical problems as required in computational durability analyses of concrete structures.

Fracture Processes of Concrete

Author : Jan G.M. van Mier
Publisher : CRC Press
Page : 468 pages
File Size : 10,72 MB
Release : 2017-07-14
Category : Technology & Engineering
ISBN : 135144722X

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Despite tremendous advances made in fracture mechanics of concrete in recent years, very little information has been available on the nature of fracture processes and on reliable test methods for determining parameters for the different models. Moreover, most texts on this topic discuss numerical modeling but fail to consider experimentation. This book fills these gaps and synthesizes progress in the field in a simple, straightforward manner geared to practical applications.