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Bearing Angle Model for Bond of Reinforcing Bars in Concrete

Authors
Choi, Oan ChulChoi, Hajin
Issue Date
Jan-2017
Publisher
AMER CONCRETE INST
Keywords
bearing angle model; bond (concrete to reinforcement); deformed bars; rib; shearing failure; splitting failure; wedging action
Citation
ACI STRUCTURAL JOURNAL, v.114, no.1, pp.245 - 253
Journal Title
ACI STRUCTURAL JOURNAL
Volume
114
Number
1
Start Page
245
End Page
253
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/6492
DOI
10.14359/51689256
ISSN
0889-3241
Abstract
The ribs of deformed reinforcing bars can cause bond failure by splitting the concrete cover or by shearing the concrete in front of the ribs. As deformed bars are pulled out, the rib face angle is flattened by the concrete key, which decreases the rib face angle to a smaller bearing angle. Analytical expressions are derived to predict bond forces with respect to splitting and shearing in this paper, and the bearing angle is a key variable. As the bearing angle decreases, the splitting bond strength also decreases, while the shearing bond strength increases. The splitting failure and the shearing failure occur instantaneously and interactively, reaching the ultimate bond strength in the case of bars confined by low transverse reinforcement. The shearing of the concrete key with increasing slip further reduces the splitting bond force, thus lowering the bond stress. The bearing angle model (BAM) is proposed to predict bond strength and to simulate bond failure mechanisms. The behaviors simulated using the proposed support existing knowledge on bonds and earlier experimental observations.
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