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research article

Experimental Investigation on Punching Strength and Deformation Capacity of Shear-Reinforced Slabs

Lips, Stefan  
•
Fernández Ruiz, Miguel  
•
Muttoni, Aurelio  
2012
ACI Structural Journal

This paper presents the results of an extensive experimental campaign on 16 flat-slab specimens with and without punching shear reinforcement. The tests aimed to investigate the influence of a set of mechanical and geometrical parameters on the punching shear strength and deformation capacity of flat slabs supported by interior columns. All specimens had the same plan dimensions of 3.0 x 3.0 m (9.84 x 9.84 ft). The investigated parameters were the column size (ranging between 130 and 520 mm [approximately 5 and 20 in.]), the slab thickness (ranging between 250 and 400 mm [approximately 10 and 16 in.]), the shear reinforcement system (studs and stirrups), and the amount of punching shear reinforcement. Systematic measurements (such as the load, the rotations of the slab, the vertical displacements, the change in slab thickness, concrete strains, and strains in the shear reinforcement) allow for an understanding of the behavior of the slab specimens, the activation of the shear reinforcement, and the strains developed in the shear-critical region at failure. Finally, the test results were investigated and compared with reference to design codes (ACI 318-08 and EC2) and the mechanical model of the critical shear crack theory (CSCT), obtaining a number of conclusions on their suitability.

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Type
research article
DOI
10.14359/51684132
Web of Science ID

WOS:000310667800014

Author(s)
Lips, Stefan  
Fernández Ruiz, Miguel  
Muttoni, Aurelio  
Date Issued

2012

Publisher

ACI Structural Journal

Published in
ACI Structural Journal
Volume

109

Issue

6

Start page

889

End page

900

Subjects

armature de poinçonnement

•

bâtiment

•

béton

•

béton armé

•

dalle

•

déformation

•

plancher-dalle

•

théorie de la fissure critique

•

punching shear reinforcement

•

building

•

concrete

•

reinforced concrete

•

slab

•

deformation

•

flat slab

•

critical crack theory

URL

URL

http://ibeton.epfl.ch/util/script/sendArticle.asp?R=Lips12b
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
IBETON  
Available on Infoscience
October 15, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/86118
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