On Shear Behavior of Structural Elements Made of Steel Fiber Reinforced Concrete

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This book sheds light on the shear behavior of Fiber Reinforced Concrete (FRC) elements, presenting a thorough analysis of the most important studies in the field and highlighting their shortcomings and issues that have been neglected to date. Instead of proposing a new formula, which would add to an already long list, it instead focuses on existing design codes. Based on a comparison of experimental tests, it provides a thorough analysis of these codes, describing both their reliability and weaknesses. Among other issues, the book addresses the influence of flange size on shear, and the possible inclusion of the flange factor in design formulas. Moreover, it reports in detail on tests performed on beams made of concrete of different compressive strengths, and on fiber reinforcements to study the influence on shear, including size effects. Lastly, the book presents a thorough analysis of FRC hollow core slabs. In fact, although this is an area of great interest in the current research landscape, it remains largely unexplored due to the difficulties encountered in attempting to fit transverse reinforcement in these elements.

Author(s): Estefanía Cuenca (auth.)
Series: Springer Theses
Edition: 1
Publisher: Springer International Publishing
Year: 2015

Language: English
Pages: 209
Tags: Structural Materials; Building Materials; Engineering Design

Front Matter....Pages i-xx
Front Matter....Pages 1-1
Introduction....Pages 3-8
Objectives and Research Significance....Pages 9-10
Front Matter....Pages 11-11
Literature Survey on Shear in FRC Beams....Pages 13-51
Front Matter....Pages 53-57
Experimental Tests on Parameters Influencing on Shear....Pages 59-78
Experimental Tests on Fibers Influence on the Size Effect on Shear....Pages 79-105
Experimental Tests to Study the Influence on the Shear Behavior of Fibers of Different Characteristics....Pages 107-123
Experimental Tests on Hollow Core Slabs Made with FRC....Pages 125-146
Front Matter....Pages 147-147
Shear Database and Study of the Parameters Influencing Shear Behavior....Pages 149-204
Front Matter....Pages 205-205
Conclusions....Pages 207-208
Recommendations for Future Research....Pages 209-209