Publication detail

Monotonic and fatigue behavior of cementitious composites modeled via a coupled sliding-decohesion-compression interface model

CHUDOBA, R. VOŘECHOVSKÝ, M.

Original Title

Monotonic and fatigue behavior of cementitious composites modeled via a coupled sliding-decohesion-compression interface model

Type

conference paper

Language

English

Original Abstract

In this paper we introduce a consistent constitutive model capturing the behavior of a 3D interface under both monotonic and cyclic loading. The model accounts for the interaction of dissipative effects during a combined decohesion-compression and sliding loading introduced through a smooth cap threshold function and non-associative flow potential. The proposed flow potential provides the possibility to couple the damage evolution of decohesion and sliding and to control the degree of this coupling. High computational efficiency is achieved by requiring a constant gradient of the threshold function in the normal direction with respect to the yield locus. As a result, a single-step return-mapping procedure without the need for iteration increases the computational efficiency. To capture the fatigue behavior in heterogeneous structures, the model consistently reflects the dissipative mechanisms of fatigue damage evolution at subcritical load levels using a cumulative measure of deformation as a damage-driving variable. Further effects of the interface response, such as shear dilatancy and vertex effect, are captured by the proposed model as demonstrated using elementary studies. A systematic calibration and validation procedure is included for selected applications showing a pull-out response of concrete-steel interface under monotonic and cyclic loading captured with a consistent set of material parameters.

Keywords

Concrete, monotonic, cyclic, fatigue, thermodynamic potential

Authors

CHUDOBA, R.; VOŘECHOVSKÝ, M.

Released

10. 5. 2022

Location

Rakousko

ISBN

9781003316404

Book

Computational Modelling of Concrete and Concrete Structures, EURO-C 2022

Pages from

510

Pages to

519

Pages count

10

BibTex

@inproceedings{BUT180130,
  author="Abedulgader {BAKTHEER} and Mario {Aguilar Rueda} and Rostislav {Chudoba} and Miroslav {Vořechovský}",
  title="Monotonic and fatigue behavior of cementitious composites modeled via a coupled sliding-decohesion-compression interface model",
  booktitle="Computational Modelling of Concrete and Concrete Structures, EURO-C 2022",
  year="2022",
  pages="510--519",
  address="Rakousko",
  doi="10.1201/9781003316404-60",
  isbn="9781003316404"
}