The strain hardening and tension softening response of short fiber-reinforced cementitious composites under unidirectional tensile/flexural loading is modelled using concepts from fracture and damage mechanics. The tensile strain hardening in these composites is due to the formation of microcracks which ave however prevented from coalescing by the bridging action of the fibers. The density of microcracks increases with increasing tensile/flexural loading until it reaches a saturation level at the tensile load carrying capacity of the composite. Thereafter the fibers progressively debond from the elastic matrix and the deformation begins to localise in the eventual fracture plane, first as unconnected cracks and later as a connected through ...
Fibre-reinforced cementitious composite (FRCC), by adding short discrete fibres randomly in cementiti...
An analytical model for the design of strain-hardening and multiple-cracking behavior of engineered ...
In this paper, the tensile and shear constitutive behavior of Fiber Reinforced Cementitious Matrix (...
This paper will describe a procedure for modelling the complete macroscopic response (including stra...
This paper will describe a procedure for modelling the complete macroscopic response (including stra...
propagation, fracture processes. Abstract: Strain Hardening Cementitious Composites (SHCC) can be di...
The main objective of this research is to study and develop predictive models that covers various fu...
A model was developed for predicting the total strain capacity (elastic and inelastic) of fiber rein...
A model was developed for predicting the total strain capacity (elastic and inelastic) of fiber rein...
A micromechanical model is constructed for the compressive strength of fiber-reinforced cementitious...
The role of fibers in the enhancement of the inherently low tensile stress and strain capacities of...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
Strain Hardening Cementitious Composites (SHCC) can be distinguished from other types of fiber rein...
Fibre-reinforced cementitious composite (FRCC), by adding short discrete fibres randomly in cementiti...
An analytical model for the design of strain-hardening and multiple-cracking behavior of engineered ...
In this paper, the tensile and shear constitutive behavior of Fiber Reinforced Cementitious Matrix (...
This paper will describe a procedure for modelling the complete macroscopic response (including stra...
This paper will describe a procedure for modelling the complete macroscopic response (including stra...
propagation, fracture processes. Abstract: Strain Hardening Cementitious Composites (SHCC) can be di...
The main objective of this research is to study and develop predictive models that covers various fu...
A model was developed for predicting the total strain capacity (elastic and inelastic) of fiber rein...
A model was developed for predicting the total strain capacity (elastic and inelastic) of fiber rein...
A micromechanical model is constructed for the compressive strength of fiber-reinforced cementitious...
The role of fibers in the enhancement of the inherently low tensile stress and strain capacities of...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
Strain Hardening Cementitious Composites (SHCC) can be distinguished from other types of fiber rein...
Fibre-reinforced cementitious composite (FRCC), by adding short discrete fibres randomly in cementiti...
An analytical model for the design of strain-hardening and multiple-cracking behavior of engineered ...
In this paper, the tensile and shear constitutive behavior of Fiber Reinforced Cementitious Matrix (...