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Performance of rubberized reinforced concrete columns under Axial and cyclic loading
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This paper presents an experimental study carried out to understand the
behavior of rubberized concrete columns under axial loads, and
numerically analyze the behavior of rubberized reinforced concrete (RRC)
columns under cyclic loading. Experimental tests were carried out on
twelve large-scale columns with square and circular cross sections, with
replacement of fine aggregate at percentages with crumb rubber (CR) of
0%, 10%, and 15% under axial loading. Square RRC columns were
examined by a finite element program (ABAQUS) under cyclic loading. The
results of the experiments showed that the columns with crumb rubber had
a lower load capacity than those without crumb rubber when exposed to
axial loads. The obtained numerical results showed good agreement with
the experimental results, indicating the ability of the numerical model
to simulate the behavior of rubberized concrete columns under axial and
cyclic loads. Moreover, the replacement of fine aggregate by 10% and
15% with crump rubber increases the lateral displacement and ductility
of the column under cyclic loading. Rubber can be used in concrete
columns with no significant effect on their ultimate strength or
deformability. However, crumb rubber concrete (CRC) can delay and reduce
the amount of damage occurring under cyclic loading.
Title: Performance of rubberized reinforced concrete columns under Axial and cyclic loading
Description:
This paper presents an experimental study carried out to understand the
behavior of rubberized concrete columns under axial loads, and
numerically analyze the behavior of rubberized reinforced concrete (RRC)
columns under cyclic loading.
Experimental tests were carried out on
twelve large-scale columns with square and circular cross sections, with
replacement of fine aggregate at percentages with crumb rubber (CR) of
0%, 10%, and 15% under axial loading.
Square RRC columns were
examined by a finite element program (ABAQUS) under cyclic loading.
The
results of the experiments showed that the columns with crumb rubber had
a lower load capacity than those without crumb rubber when exposed to
axial loads.
The obtained numerical results showed good agreement with
the experimental results, indicating the ability of the numerical model
to simulate the behavior of rubberized concrete columns under axial and
cyclic loads.
Moreover, the replacement of fine aggregate by 10% and
15% with crump rubber increases the lateral displacement and ductility
of the column under cyclic loading.
Rubber can be used in concrete
columns with no significant effect on their ultimate strength or
deformability.
However, crumb rubber concrete (CRC) can delay and reduce
the amount of damage occurring under cyclic loading.
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