In this work, a computational model for simulating the relevant mechanisms governing the pull-out of a discrete reinforcement embedded into cement based materials is described. The model accounts for the material and geometric properties of the reinforcement, which can include an anchored end, the interface between reinforcement and surrounding medium, and the relative inclination of the reinforcement to the crack plane. The reinforcement is modelled as a Timoshenko beam resting on a cohesive-like foundation that allows all the failure modes seen in the experiments to be accounted for, namely: debonding at the interface between the reinforcement and the concrete, cracking and spalling of the concrete matrix, rupture of the reinforcement. A ...
Novel cementious composites like textile reinforced concrete show many promising attributes such as ...
Abstract Composite materials for strengthening existing structural members represent a valid alterna...
This paper presents a new discrete crack model that can simulate the complex behavior of fiber-reinf...
In this work, a computational model for simulating the relevant mechanisms governing the pull-out of...
The addition of metallic fibres in concrete is a widely used technique to increase its resistance t...
This thesis is concerned with developing an effective and comprehensive method to simulate pull-out ...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
AbstractThe discrete modeling of individual fibers in cement-based materials provides several advant...
Aim of the paper is to present a one dimensional simple model for the study of the bond behavior of ...
There are several benefits of introducing steel fibres in reinforced concrete. They can improve the ...
The present work describes an integrated approach that leads to the development of a new model capab...
This work presents a numerical approach to simulate the behaviour of steel fibre reinforced concrete...
The effectiveness of externally bonded strengthening for reinforced concrete (RC) elements strongly ...
This paper presents a numerical plane Finite Element (FE) Model for use in simulating the behaviour...
Concrete is a predominant construction material due to several advantages; however, the pure cementi...
Novel cementious composites like textile reinforced concrete show many promising attributes such as ...
Abstract Composite materials for strengthening existing structural members represent a valid alterna...
This paper presents a new discrete crack model that can simulate the complex behavior of fiber-reinf...
In this work, a computational model for simulating the relevant mechanisms governing the pull-out of...
The addition of metallic fibres in concrete is a widely used technique to increase its resistance t...
This thesis is concerned with developing an effective and comprehensive method to simulate pull-out ...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
AbstractThe discrete modeling of individual fibers in cement-based materials provides several advant...
Aim of the paper is to present a one dimensional simple model for the study of the bond behavior of ...
There are several benefits of introducing steel fibres in reinforced concrete. They can improve the ...
The present work describes an integrated approach that leads to the development of a new model capab...
This work presents a numerical approach to simulate the behaviour of steel fibre reinforced concrete...
The effectiveness of externally bonded strengthening for reinforced concrete (RC) elements strongly ...
This paper presents a numerical plane Finite Element (FE) Model for use in simulating the behaviour...
Concrete is a predominant construction material due to several advantages; however, the pure cementi...
Novel cementious composites like textile reinforced concrete show many promising attributes such as ...
Abstract Composite materials for strengthening existing structural members represent a valid alterna...
This paper presents a new discrete crack model that can simulate the complex behavior of fiber-reinf...