Proposed formula for design of deep beams with shear openings

This research presents an analytical study to verify the experimental study of new models for reinforcing deep beams with different shear openings, in addition to proposing a formula for calculating the shear capacity of such beams.The results of the analytical study demonstrated the efficiency of t...

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Main Authors: M.A. Ibrahim, A. El Thakeb, A.A. Mostfa, H.A. Kottb
Format: Article
Language:English
Published: Taylor & Francis Group 2018-12-01
Series:HBRC Journal
Online Access:http://www.sciencedirect.com/science/article/pii/S1687404818300105
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spelling doaj-3c4b39af99d34eabae0add341b03f8392020-11-24T21:18:27ZengTaylor & Francis GroupHBRC Journal1687-40482018-12-01143450465Proposed formula for design of deep beams with shear openingsM.A. Ibrahim0A. El Thakeb1A.A. Mostfa2H.A. Kottb3Faculty of Engineering, Al-Azhar University, EgyptFaculty of Engineering, Al-Azhar University, EgyptFaculty of Engineering, Al-Azhar University, EgyptCorresponding author at: 58 Al-Ottor 1 St., Faisal-Giza 12558, Egypt.; Faculty of Engineering, Al-Azhar University, EgyptThis research presents an analytical study to verify the experimental study of new models for reinforcing deep beams with different shear openings, in addition to proposing a formula for calculating the shear capacity of such beams.The results of the analytical study demonstrated the efficiency of the proposed nonlinear finite element (NLFE) model by close matching the carrying capacity of the tested beams and their comparative analyzed by the ABAQUS program. The analytical program included representing a 14-specimens study with two different concrete strength and three different sizes of shear openings.The comparison revealed the accuracy of the analytical model in the representation of solid deep beams and deep beams with shear openings; including predicting the fracture load, the behavior of these beams, in addition to the crack pattern and stresses of the proposed reinforcement configurations.Using both of ABAQUS program and specifications of the ACI 318-14 (ACI Committee 318, 2014), a parametric study was developed to investigate the relationship between shear strength of deep beams with different sizes of shear openings and shear opening ratio to the total area of shear zone.Based on this parametric study, a dimensionless equation for calculating the shear strength of deep beams was obtained, which can be utilized in the design of such beams having same shear span-to-depth ratio and opening maximum size of 0.15 relative to shear zone. Keywords: Solid deep beams, Deep beams with shear openings, Proposed shear reinforcement, Finite element modeling, Predicting shear strength of deep beams with shear openingshttp://www.sciencedirect.com/science/article/pii/S1687404818300105
collection DOAJ
language English
format Article
sources DOAJ
author M.A. Ibrahim
A. El Thakeb
A.A. Mostfa
H.A. Kottb
spellingShingle M.A. Ibrahim
A. El Thakeb
A.A. Mostfa
H.A. Kottb
Proposed formula for design of deep beams with shear openings
HBRC Journal
author_facet M.A. Ibrahim
A. El Thakeb
A.A. Mostfa
H.A. Kottb
author_sort M.A. Ibrahim
title Proposed formula for design of deep beams with shear openings
title_short Proposed formula for design of deep beams with shear openings
title_full Proposed formula for design of deep beams with shear openings
title_fullStr Proposed formula for design of deep beams with shear openings
title_full_unstemmed Proposed formula for design of deep beams with shear openings
title_sort proposed formula for design of deep beams with shear openings
publisher Taylor & Francis Group
series HBRC Journal
issn 1687-4048
publishDate 2018-12-01
description This research presents an analytical study to verify the experimental study of new models for reinforcing deep beams with different shear openings, in addition to proposing a formula for calculating the shear capacity of such beams.The results of the analytical study demonstrated the efficiency of the proposed nonlinear finite element (NLFE) model by close matching the carrying capacity of the tested beams and their comparative analyzed by the ABAQUS program. The analytical program included representing a 14-specimens study with two different concrete strength and three different sizes of shear openings.The comparison revealed the accuracy of the analytical model in the representation of solid deep beams and deep beams with shear openings; including predicting the fracture load, the behavior of these beams, in addition to the crack pattern and stresses of the proposed reinforcement configurations.Using both of ABAQUS program and specifications of the ACI 318-14 (ACI Committee 318, 2014), a parametric study was developed to investigate the relationship between shear strength of deep beams with different sizes of shear openings and shear opening ratio to the total area of shear zone.Based on this parametric study, a dimensionless equation for calculating the shear strength of deep beams was obtained, which can be utilized in the design of such beams having same shear span-to-depth ratio and opening maximum size of 0.15 relative to shear zone. Keywords: Solid deep beams, Deep beams with shear openings, Proposed shear reinforcement, Finite element modeling, Predicting shear strength of deep beams with shear openings
url http://www.sciencedirect.com/science/article/pii/S1687404818300105
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