Discrete element method (DEM) was used to simulate the dynamic process of microbond test of fiber reinforced composites, in which the fiber and matrix were modeled as elastic and elastic-plastic materials, respectively. The interface between fiber and matrix was represented by a bilinear contact softening model. Plastic deformation and progressive cracking of the matrix were observed in the simulation with comparable similarity to the existing experimental results. The initiation and propagation of interfacial debonding were also captured by the DEM simulations, whereas it is very difficult to achieve this by other numerical methods. Vertical and inclined vises with two different vise angles were tested in the simulations. It was found that...
AbstractThe present study has focused on achieving a micromechanical understanding of the microbond ...
Microdamage in composites reduces the performance and durability of the material. The stiffness is r...
Due to variations in damage mechanisms in the microscale, the behavior of fiber-reinforced composite...
Discrete element method (DEM) was used to simulate the dynamic process of microbond test of fiber re...
This paper presents a 3D simulation of damages and cracks growth in composite material using Discret...
International audienceIn this article, the Discrete Element Method (DEM) is taking advantage for the...
Discrete element method (DEM) was used to model progressive delamination of fiber reinforced composi...
A particle discrete element method (DEM) was employed to simulate transverse cracking in laminated f...
Due to the complex nature of fibre reinforced composite (FRC) materials, the onset of damage does no...
The mechanical behaviour of unidirectional fibre-reinforced polymer composites subjected to transver...
This paper presents a 3D simulation of interface debonding in composite material using 3D Discrete E...
A promising way to model fracture mechanics with the use of an original Discrete Element Method (DEM...
The combination of brittle material with ductile fibres can produce competent composites. The fibres...
As a natural progress of the research in the area of modeling damage at microscopic scales, a discre...
International audienceThe present paper investigates the suitability of a Discrete Element Method (D...
AbstractThe present study has focused on achieving a micromechanical understanding of the microbond ...
Microdamage in composites reduces the performance and durability of the material. The stiffness is r...
Due to variations in damage mechanisms in the microscale, the behavior of fiber-reinforced composite...
Discrete element method (DEM) was used to simulate the dynamic process of microbond test of fiber re...
This paper presents a 3D simulation of damages and cracks growth in composite material using Discret...
International audienceIn this article, the Discrete Element Method (DEM) is taking advantage for the...
Discrete element method (DEM) was used to model progressive delamination of fiber reinforced composi...
A particle discrete element method (DEM) was employed to simulate transverse cracking in laminated f...
Due to the complex nature of fibre reinforced composite (FRC) materials, the onset of damage does no...
The mechanical behaviour of unidirectional fibre-reinforced polymer composites subjected to transver...
This paper presents a 3D simulation of interface debonding in composite material using 3D Discrete E...
A promising way to model fracture mechanics with the use of an original Discrete Element Method (DEM...
The combination of brittle material with ductile fibres can produce competent composites. The fibres...
As a natural progress of the research in the area of modeling damage at microscopic scales, a discre...
International audienceThe present paper investigates the suitability of a Discrete Element Method (D...
AbstractThe present study has focused on achieving a micromechanical understanding of the microbond ...
Microdamage in composites reduces the performance and durability of the material. The stiffness is r...
Due to variations in damage mechanisms in the microscale, the behavior of fiber-reinforced composite...