A new formulation to model the mechanical behavior of high performance fiber reinforced cement composites with arbitrarily oriented short fibers is presented. The formulation can be considered as a two scale approach, in which the macroscopic model, at the structural level, takes into account the mesostructural phenomenon associated with the fiber-matrix interface bond/slip process. This phenomenon is contemplated by including, in the macroscopic description, a micromorphic field representing the relative fiber-cement displacement. Then, the theoretical framework, from which the governing equations of the problem are derived, can be assimilated to a specific case of the Material Multifield Theory. The balance equation derived for this m...
This article presents a Study of steel fiber-reinforced concrete (SFRC). In its first part, it four-...
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...
A new formulation to model the mechanical behavior of high performance fiber reinforced cement compo...
AbstractA new formulation to model the mechanical behavior of high performance fiber reinforced ceme...
The final publication is available at Springer via http://dx.doi.org/10.1007/s00466-013-0873-4A fini...
A finite element methodology for simulating the failure of high performance fiber reinforced concret...
Cementitious materials such as mortar or concrete are brittle and have an inherent weakness in resis...
Fiber reinforced concrete is analyzed and modeled at two different levels of observation. On the one...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
In this work the capabilities of an interface model to predict failure behavior of steel fiber reinf...
The role of fibers in the enhancement of the inherently low tensile stress and strain capacities of...
This paper investigates the mechanical behavior of fiber-reinforced concrete (FRC) and focusses on t...
The main objective of this research is to study and develop predictive models that covers various fu...
This article presents a Study of steel fiber-reinforced concrete (SFRC). In its first part, it four-...
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...
A new formulation to model the mechanical behavior of high performance fiber reinforced cement compo...
AbstractA new formulation to model the mechanical behavior of high performance fiber reinforced ceme...
The final publication is available at Springer via http://dx.doi.org/10.1007/s00466-013-0873-4A fini...
A finite element methodology for simulating the failure of high performance fiber reinforced concret...
Cementitious materials such as mortar or concrete are brittle and have an inherent weakness in resis...
Fiber reinforced concrete is analyzed and modeled at two different levels of observation. On the one...
The paper presents a 3D constitutive model for fibre reinforced cementitious composites based on mic...
In this work the capabilities of an interface model to predict failure behavior of steel fiber reinf...
The role of fibers in the enhancement of the inherently low tensile stress and strain capacities of...
This paper investigates the mechanical behavior of fiber-reinforced concrete (FRC) and focusses on t...
The main objective of this research is to study and develop predictive models that covers various fu...
This article presents a Study of steel fiber-reinforced concrete (SFRC). In its first part, it four-...
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...