Strengthening RC Columns Using Carbon Fiber Reinforced Epoxy Composites Modified with Carbon Nanotubes

This paper investigates the viability of using carbon
fiber reinforced epoxy composites modified with carbon nanotubes to
strengthening reinforced concrete (RC) columns. Six RC columns
was designed and constructed according to ASCE standards. The
columns were wrapped using carbon fiber sheets impregnated with
either neat epoxy or CNTs modified epoxy. These columns were then
tested under concentric axial loading. Test results show that;
compared to the unwrapped specimens; wrapping concrete columns
with carbon fiber sheet embedded in CNTs modified epoxy resulted
in an increase in its axial load resistance, maximum displacement,
and toughness values by 24%, 109% and 232%, respectively. These
results reveal that adding CNTs into epoxy resin enhanced the
confinement effect, specifically, increased the axial load resistance,
maximum displacement, and toughness values by 11%, 6%, and
19%, respectively compared with columns strengthening with carbon
fiber sheet embedded in neat epoxy.





References:
[1] Belouar A, Laraba A, Benzaid R, Chikh N. Structural Performance of
Square Concrete Columns Wrapped with CFRP Sheets. Procedia Eng
2013;54:232–40. doi:10.1016/j.proeng.2013.03.021.
[2] Gambarelli S, Nisticò N, Ožbolt J. Numerical analysis of compressed
concrete columns confined with CFRP: Microplane-based approach.
Compos Part B Eng 2014; 67: 303–12.
doi:10.1016/j.compositesb.2014.06.026.
[3] Trapko T, Musiał M. The effectiveness of CFRP materials strengthening
of eccentrically compressed reinforced concrete columns. Arch Civ
Mech Eng 2011;11:249–62. doi:10.1016/S1644-9665(12)60187-3.
[4] Nisticò N. R.C. square sections confined by FRP: A numerical
procedure for predicting stress–strain relationships. Compos Part B Eng
2014;59:238–47. doi:10.1016/j.compositesb.2013.12.004.
[5] Rocca S, Galati N, Nanni A. Review of Design Guidelines for FRP
Confinement of Reinforced Concrete Columns of Noncircular Cross
Sections. J Compos Constr 2008;12:80–92. doi:10.1061/(ASCE)1090-
0268(2008)12:1(80).
[6] Mirmiran A, Shahawy M, Samaan M, Echary HE, Mastrapa JC, Pico O.
Effect of Column Parameters on FRP-Confined Concrete. J Compos
Constr 1998;2:175–85. doi:10.1061/(ASCE)1090-0268(1998)2:4(175).
[7] Wang L-M, Wu Y-F. Effect of corner radius on the performance of
CFRP-confined square concrete columns: Test. Eng Struct 2008;30:493–
505. doi:10.1016/j.engstruct.2007.04.016.
[8] Wu Y-F, Wei Y-Y. Effect of cross-sectional aspect ratio on the strength
of CFRP-confined rectangular concrete columns. Eng Struct 2010; 32:
32–45. doi:10.1016/j.engstruct.2009.08.012.