Journal of
Faculty of Civil Engineering


JOURNALS
FACULTY JOURNALS
SCIENTIFIC MEETINGS
EBOOKS
ARCHIVE








JOURNAL OF FACULTY OF CIVIL ENGINEERING 26, 2014.y., pp. 45-54


NONLINEAR ANALYSIS OF REINFORCED CONCRETE STRUCTURES USING SOFTWARE PACKAGE ABAQUS
 
DOI: 10.14415/zbornikGFS26.05
UDC: 624.04 : 004.4ABAQUS
CC-BY-SA 4.0 license
Author : Marković, Nemanja; Stojić, Dragoslav; Cvetković, Radovan
 
 Summary:
 Reinforced concrete (AB) is characterized by huge inhomogeneity resulting from the material characteristics of the concrete, then, quasi-brittle behavior during failure. These and other phenomena require the introduction of material nonlinearity in the modeling of reinforced concrete structures. This paper presents the modeling reinforced concrete in the software package ABAQUS. A brief theoretical overview is presented of methods such as: Concrete Damage Plasticity (CDP), Smeared Concrete Cracking (CSC), Cap Plasticity (CP) and Drucker-Prager model (DPM). We performed a nonlinear analysis of two-storey reinforced concrete frame by applying CDP method for modeling material nonlinearity of concrete. We have analyzed damage zones, crack propagation and loading-deflection ratio.
 
 Keywords:
 Finite element method, reinforced concrete, crack propagation, modeling, Concrete Damage Plasticity