Shear and Bending Performances of Reinforced Concrete Beams With Different Sizes of Circular Openings

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GOLD

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Yes

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Abstract

The present study pertains to the effects of transverse opening diameters and shear reinforcement ratios on the shear and flexural behavior of RC beams with two web openings across different spans, i.e., a single opening in each half-span. Within the scope of the study, a total of 12 RC beams with five different opening diameter-to-beam depth ratios (0, 0.20, 0.27, 0.33, 0.40, and 0.47) and two shear reinforcement ratios were tested to failure under four-point bending. The load capacities, ductilities, rigidities and energy dissipation capacities in the elastic and plastic ranges of beam behavior were compared. Furthermore, the load capacities of the beams were compared to the existing analytical shear strength formulations in the literature. The test results indicated that whether an RC beam with openings has adequate or inadequate amounts of shear reinforcement, the frame-type shear failure becomes much more pronounced with increasing opening diameter. The reductions in the load capacity and modulus of toughness with increasing opening diameter are more considerable in the presence of inadequate amounts of shear reinforcement, while the beam ductility is less affected in shear-deficient RC beams with openings as compared to the ones with adequate shear reinforcement.

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Keywords

transverse opening, chord, frame-type shear failure, shear-tension failure, beam ductility, modulus of resilience, modulus of toughness, Rc Beams, Web Openings, Deep Beams, Behavior, chord, Building construction, beam ductility, 02 engineering and technology, 0211 other engineering and technologies, frame-type shear failure, modulus of resilience, transverse opening; chord; frame-type shear failure; shear-tension failure; beam ductility; modulus of resilience; modulus of toughness, transverse opening, TH1-9745, 0201 civil engineering, shear-tension failure, modulus of toughness

Fields of Science

0211 other engineering and technologies, 02 engineering and technology, 0201 civil engineering

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8

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Volume

13

Issue

8

Start Page

1989

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CrossRef : 5

Scopus : 24

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