A platform for research: civil engineering, architecture and urbanism
Plasticity based approach for failure modelling of unreinforced masonry
Highlights Plasticity based composite interface model for failure analysis of unreinforced masonry. Hyperbolic composite interface model consists of a single surface yield criterion The model includes potential crack, slip, and crushing of the masonry joints.
Abstract In this work, a plasticity based composite interface model is proposed for failure analysis of unreinforced masonry. The hyperbolic composite interface model consists of a single surface yield criterion, which is a direct extension of Mohr-Coulomb criteria with cut in tension region and a cap in compression region. The inelastic behaviour includes potential crack, slip, and crushing of the masonry joints. A micro mechanical based approach is adopted for failure modelling of the masonry. The model is developed by using a fully implicit backward-Euler integration strategy. It is combined with a local/global Newton solver, based on a consistent tangent operator compatible with an adaptive sub stepping strategy. The model is implemented in standard finite element software (ABAQUS) by using user defined subroutine and verification is conducted in all its basic modes. Finally, the model is validated by comparing with experimental results available in the literature.
Plasticity based approach for failure modelling of unreinforced masonry
Highlights Plasticity based composite interface model for failure analysis of unreinforced masonry. Hyperbolic composite interface model consists of a single surface yield criterion The model includes potential crack, slip, and crushing of the masonry joints.
Abstract In this work, a plasticity based composite interface model is proposed for failure analysis of unreinforced masonry. The hyperbolic composite interface model consists of a single surface yield criterion, which is a direct extension of Mohr-Coulomb criteria with cut in tension region and a cap in compression region. The inelastic behaviour includes potential crack, slip, and crushing of the masonry joints. A micro mechanical based approach is adopted for failure modelling of the masonry. The model is developed by using a fully implicit backward-Euler integration strategy. It is combined with a local/global Newton solver, based on a consistent tangent operator compatible with an adaptive sub stepping strategy. The model is implemented in standard finite element software (ABAQUS) by using user defined subroutine and verification is conducted in all its basic modes. Finally, the model is validated by comparing with experimental results available in the literature.
Plasticity based approach for failure modelling of unreinforced masonry
Kumar, Nitin (author) / Amirtham, Rajagopal (author) / Pandey, Manoj (author)
Engineering Structures ; 80 ; 40-52
2014-08-12
13 pages
Article (Journal)
Electronic Resource
English
Plasticity based approach for failure modelling of unreinforced masonry
Online Contents | 2014
|Material Model For Unreinforced Masonry Based On Plasticity Theory
British Library Conference Proceedings | 2005
|Failure of Unreinforced Masonry Under Compression
ASCE | 2013
|Failure of Unreinforced Masonry Under Compression
British Library Conference Proceedings | 2013
|A new approach to F.E. modelling of unreinforced masonry
British Library Conference Proceedings | 1993
|