The presented research work demonstrates an efficient methodology based on a micromechanical framework for the prediction of the effective elastic properties of strongly bonded long-fiber-reinforced materials (CFRP) used for the construction of tubular structures. Although numerous analytical and numerical micromechanical models have been developed to predict the mechanical response of CFRPs, either they cannot accurately predict complex mechanical responses due to limits on the input parameters or they are resource intensive. The generalized method of cells (GMC) is capable of assessing more detailed strain fields in the vicinity of fiber–matrix interfaces since it allows for a plethora of material and structural parameters to be defined w...
This paper presents a new micromechanical model for the prediction of the tensile modulus and streng...
This paper deals with the prediction of the elastic properties of polymer composites reinforced with...
A micromechanical model is presented for predicting the longitudinal tensile strength of polymer mat...
The use of composite materials has known a crescent interest in the last decades in many application...
This work deals with the prediction of the macroscopic response of ductile composites reinforced by ...
A new micromechanics framework is developed for long fibre reinforced composites using a single fibr...
A higher-order micromechanical framework is presented to predict the overall elastic deformation beh...
The mechanical properties of composites are traditionally measured using numerical and experimental ...
A finite element model is proposed for simulating the short and long term strength of Glass Fibre Re...
The present paper concerns with the influence of fiber packing on the transverse plastic properties ...
A micromechanical approach can promote understanding of composite material failure mechanisms and in...
The paper begins with a short overview of the recent work done in the field of discontinuous reinfor...
Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of...
Reference is made herein to the elastic–brittle behavior of unidirectional E-glass-fiber epoxy–matri...
The determination of effective mechanical properties of multi-layer composite is presented in this p...
This paper presents a new micromechanical model for the prediction of the tensile modulus and streng...
This paper deals with the prediction of the elastic properties of polymer composites reinforced with...
A micromechanical model is presented for predicting the longitudinal tensile strength of polymer mat...
The use of composite materials has known a crescent interest in the last decades in many application...
This work deals with the prediction of the macroscopic response of ductile composites reinforced by ...
A new micromechanics framework is developed for long fibre reinforced composites using a single fibr...
A higher-order micromechanical framework is presented to predict the overall elastic deformation beh...
The mechanical properties of composites are traditionally measured using numerical and experimental ...
A finite element model is proposed for simulating the short and long term strength of Glass Fibre Re...
The present paper concerns with the influence of fiber packing on the transverse plastic properties ...
A micromechanical approach can promote understanding of composite material failure mechanisms and in...
The paper begins with a short overview of the recent work done in the field of discontinuous reinfor...
Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of...
Reference is made herein to the elastic–brittle behavior of unidirectional E-glass-fiber epoxy–matri...
The determination of effective mechanical properties of multi-layer composite is presented in this p...
This paper presents a new micromechanical model for the prediction of the tensile modulus and streng...
This paper deals with the prediction of the elastic properties of polymer composites reinforced with...
A micromechanical model is presented for predicting the longitudinal tensile strength of polymer mat...