Title of article :
Prediction of effective moment of inertia for hybrid FRP-steel reinforced concrete beams using the genetic algorithm
Author/Authors :
Kheyroddin, Ali Department of Civil Engineering - Semnan University, Semnan, Iran , Maleki, Fahimeh Department of Civil Engineering - Semnan University, Semnan, Iran
Abstract :
The use of Concrete beams reinforced with a combination of fiber reinforced polymer (FRP)
and steel bars has increased dramatically in recent years, due to improvement in strength and
flexural ductility simultaneously. In this paper, we proposed a new equation for estimating the
effective moment of inertia of hybrid FRP-steel reinforced concrete (RC) beams on the basis of
the genetic algorithm and experimental results.The genetic algorithm is used to optimize the
percent error between experimental and analytical responses. In the proposed equation,
additional coefficients are considered in order to take into account the specific properties of
FRP bars. The effects of the elastic modulus of FRP and steel bars, the hybrid reinforcement
ratio, Af /As, and the different level of loading on the effective moment of inertia has been
considered.These coefficients are used to modify Branson’s equation to compute the effective
moment of inertia of concrete beams reinforced by FRP and steel bars. Comparison between
the experimental and predicted results showed the adequacy of the model used in predicting the
effective moment of inertia, and deflection of hybrid – RC beams.
Keywords :
Deflection , FRP bars , Effective moment of Inertia , Genetic algorithm , Hybrid RC beam
Journal title :
Astroparticle Physics