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  4. Influence of Shear on Rotation Capacity of Reinforced Concrete Members Without Shear Reinforcement
 
research article

Influence of Shear on Rotation Capacity of Reinforced Concrete Members Without Shear Reinforcement

Vaz Rodrigues, Rui
•
Muttoni, Aurelio  
•
Fernández Ruiz, Miguel  
2010
ACI Structural Journal

The influence of shear on the rotation capacity of one-way slabs without shear reinforcement is investigated in this paper by means of an experimental study. The experimental program consisted of 11 slab strips 8400 mm (331 in.) long and 450 mm (17.7 in.) thick with a flexural reinforcement ratio of 0.79%. The rotation capacity was investigated for various values of the shear span and for two types of flexural reinforcement (hot-rolled and cold-worked bars). The specimens developed shear failures with and without yielding of the flexural reinforcement and one specimen failed in flexure with rupture of the tensile reinforcement. The results clearly show that the rotation capacity at failure is governed by shear. Based on the test results, and considering the principles of the critical shear-crack theory (CSCT), an analytical expression is proposed to estimate the rotation capacity of one-way members without transverse reinforcement accounting for shear.

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Type
research article
DOI
10.14359/51663902
Web of Science ID

WOS:000281660400002

Author(s)
Vaz Rodrigues, Rui
Muttoni, Aurelio  
Fernández Ruiz, Miguel  
Date Issued

2010

Publisher

ACI Structural Journal

Published in
ACI Structural Journal
Volume

107

Issue

5

Start page

516

End page

525

Subjects

bridge

•

béton armé

•

pont

•

dalle

•

reinforced concrete

•

slab

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
IBETON  
Available on Infoscience
August 12, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/52141
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