A new polymer composite material composed of a fibre reinforced filler and two types of matrices: thermosetting (epoxy) and elastomeric (organosilicon) is introduced. The main purpose of the elastomeric matrix is stress relaxation and slowdown and prevention of crack growth in the composite material under dynamic loads, including bending and delamination. In this study, a finite element model of such composite is developed and its stress-strain state is calculated depending on the elastic characteristics of the elastomer. It was established that the addition of an elastomeric matrix in the composite allows to stop the crack growth, and significantly increase the durability of such materials
Polymer composites are formed as random or anisotropic fibre dispersions, sheets with long fibre fel...
We report the development of an intrinsic healing glass fibre reinforced polymer (GFRP) composite ba...
Composite materials are widely used in engineering applications due to their remarkable mechanical p...
A new polymer composite material composed of a fibre reinforced filler and two types of matrices: th...
This work describes the mechanical stress behavior of composite materials made up of a polymer matri...
ABSTRACT: A finite element model is created to investigate the contribution of inelastic matrix defo...
AbstractMicromechanical analyses of unidirectional continuous-fibre reinforced composite materials w...
The development of composite materials has extended material property combinations and ranges, and t...
Continuous fiber reinforced composite materials are susceptible to matrix cracking and delamination ...
The effect of mechanical and physical properties of polymer matrices on stressamplification factors ...
One of the main problem in any materials is that after a brief period of time there will be some wea...
FRCM (Fabric Reinforced Cementitious Matrix) composites are the next stage of development of composi...
The present research work has studied the fatigue behaviour of matrices and fibre-composites based u...
The elastic fibre prestressing (EFP) technique has been developed to balance the thermal residual st...
The influence of the matrix on the transverse tensile properties of unidirectional carbon fiber-rein...
Polymer composites are formed as random or anisotropic fibre dispersions, sheets with long fibre fel...
We report the development of an intrinsic healing glass fibre reinforced polymer (GFRP) composite ba...
Composite materials are widely used in engineering applications due to their remarkable mechanical p...
A new polymer composite material composed of a fibre reinforced filler and two types of matrices: th...
This work describes the mechanical stress behavior of composite materials made up of a polymer matri...
ABSTRACT: A finite element model is created to investigate the contribution of inelastic matrix defo...
AbstractMicromechanical analyses of unidirectional continuous-fibre reinforced composite materials w...
The development of composite materials has extended material property combinations and ranges, and t...
Continuous fiber reinforced composite materials are susceptible to matrix cracking and delamination ...
The effect of mechanical and physical properties of polymer matrices on stressamplification factors ...
One of the main problem in any materials is that after a brief period of time there will be some wea...
FRCM (Fabric Reinforced Cementitious Matrix) composites are the next stage of development of composi...
The present research work has studied the fatigue behaviour of matrices and fibre-composites based u...
The elastic fibre prestressing (EFP) technique has been developed to balance the thermal residual st...
The influence of the matrix on the transverse tensile properties of unidirectional carbon fiber-rein...
Polymer composites are formed as random or anisotropic fibre dispersions, sheets with long fibre fel...
We report the development of an intrinsic healing glass fibre reinforced polymer (GFRP) composite ba...
Composite materials are widely used in engineering applications due to their remarkable mechanical p...