As composites continue to be increasingly used, finite element material models that homogenize the composite response become the only logical choice as not only modeling the entire composite microstructure is computationally expensive but obtaining the entire suite of experimental data to characterize deformation and failure may not be possible. The focus of this paper is the development of a modeling framework where plasticity, damage, and failure-related experimental data are obtained for each composite constituent. Mesoscale finite elements models consisting of multiple repeating unit cells are then generated and used to represent a typical carbon fiber/epoxy resin unidirectional composite to generate the complete principal direction str...
The paper proposes a material model that characterizes the plastic behavior and damage accumulation ...
A multiscale modelling approach was developed in order to estimate the effect of defects on the stre...
This chapter sets out to introduce the reader to the important area of micromechanical modelling for...
To support the modelling of composites under rapid transient loading, e.g. impact, crash, and vibrat...
This work presents an analytical model to predict the strength of the unidirectional carbon epoxy co...
This work presents an analytical model to predict the strength of the unidirectional carbon epoxy co...
peer reviewedThis paper presents an extension of the so-called incremental-secant mean-field homogen...
A comprehensive, novel and computationally low cost multiscale model based on finite element analysi...
Damage evolution within polymer matrix composites (PMCs) is difficult to characterize, as variabilit...
Composite materials have a complex behavior, which is difficult to predict under different types of ...
The purpose of this thesis is to model the mechanical failure of carbon fiber-reinforced epoxy compo...
The purpose of this thesis is to model the mechanical failure of carbon fiber-reinforced epoxy compo...
A micromechanical approach can promote understanding of composite material failure mechanisms and in...
A computational micromechanics based Finite Element (FE) analysis methodology is presented to predic...
The paper proposes a material model that characterizes the plastic behavior and damage accumulation ...
The paper proposes a material model that characterizes the plastic behavior and damage accumulation ...
A multiscale modelling approach was developed in order to estimate the effect of defects on the stre...
This chapter sets out to introduce the reader to the important area of micromechanical modelling for...
To support the modelling of composites under rapid transient loading, e.g. impact, crash, and vibrat...
This work presents an analytical model to predict the strength of the unidirectional carbon epoxy co...
This work presents an analytical model to predict the strength of the unidirectional carbon epoxy co...
peer reviewedThis paper presents an extension of the so-called incremental-secant mean-field homogen...
A comprehensive, novel and computationally low cost multiscale model based on finite element analysi...
Damage evolution within polymer matrix composites (PMCs) is difficult to characterize, as variabilit...
Composite materials have a complex behavior, which is difficult to predict under different types of ...
The purpose of this thesis is to model the mechanical failure of carbon fiber-reinforced epoxy compo...
The purpose of this thesis is to model the mechanical failure of carbon fiber-reinforced epoxy compo...
A micromechanical approach can promote understanding of composite material failure mechanisms and in...
A computational micromechanics based Finite Element (FE) analysis methodology is presented to predic...
The paper proposes a material model that characterizes the plastic behavior and damage accumulation ...
The paper proposes a material model that characterizes the plastic behavior and damage accumulation ...
A multiscale modelling approach was developed in order to estimate the effect of defects on the stre...
This chapter sets out to introduce the reader to the important area of micromechanical modelling for...