Experimental investigation on concrete confined by fiber reinforced polymer and comparison with theoretical model


Abstract:

Prevalently compressed concrete columns can be transversely confined in order to obtain increase in strength and ductility. Generally, two principal methodologies of advanced confinement are used: the "Wrapping" technique which consists of wrapped concrete columns using thin carbon or glass flexible straps epoxy-bonded concrete surface; and concrete filled FRP tubes (CFFT) in which the tube is the pour form, protective jacket, confining mechanism, and shear and flexural reinforcement. The purpose of this paper is to theoretically model the stress-strain behavior of concrete confined by FRP straps or tubes, evidencing the straight dependence of cr - curve on the hoop mechanical properties of the transverse composite reinforcement. The proposed model consists of a generalization of the theory of elasticity, i.e. a step by step application of Navier classical relations which define the stress-strain laws in states of triaxial stress. The theoretical results are compared with experimental compression tests carried out on ten cylindrical concrete specimens confined with two different typologies of fiber composite tubes.

Año de publicación:

1999

Keywords:

  • concrete
  • Axial strength
  • Tubes
  • columns
  • Fiber reinforced polymer
  • Confinement

Fuente:

scopusscopus

Tipo de documento:

Conference Object

Estado:

Acceso restringido

Áreas de conocimiento:

  • Ingeniería civil
  • Material compuesto
  • Ciencia de materiales

Áreas temáticas:

  • Ingeniería y operaciones afines
  • Materiales de construcción
  • Ingeniería civil