A numerical fragmentation model is proposed to predict the mechanical response of intermingled, unidirectional hybrid composites under tensile loads. The model is based on a previously developed for unidirectional composites considering the critical number of fiber breaks and the correction of the fiber-matrix interfacial strength. Hybrids comprising two reinforcements are considered, and the energetic contribution of reinforcements is evaluated during the damage process. Additionally, the pseudo-ductile strain, yield strength, and the level of degradation of each reinforcement are estimated. The present model is compared with a progressive failure model and micromechanical finite element simulations, obtaining some similarities in the stre...
In this thesis, a micromechanical model for predicting the tensile failure process in hybrid and non...
The single-fiber composite (SFC) has been widely used to quantify fiber strength and fiber-matrix in...
In this thesis, a micromechanical model for predicting the tensile failure process in hybrid and non...
Ply fragmentation is a dual-scale phenomenon comprised of fibre breaks at the micro-level and ply fr...
Two 3D finite element approaches for unidirectional hybrid composites were built to represent failur...
Fibre-hybrid composites are attracting an ever-increasing interest from academia and industry. It is...
The failure strain of fibre-reinforced composites can be increased by fibre hybridisation. A recentl...
With the title "Unidirectional interply fibre-hybrid composites: longitudinal tensile failure and in...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
This paper presents an analytical model to predict the stress redistribution around broken fibres in...
In this thesis, a micromechanical model for predicting the tensile failure process in hybrid and non...
The single-fiber composite (SFC) has been widely used to quantify fiber strength and fiber-matrix in...
In this thesis, a micromechanical model for predicting the tensile failure process in hybrid and non...
Ply fragmentation is a dual-scale phenomenon comprised of fibre breaks at the micro-level and ply fr...
Two 3D finite element approaches for unidirectional hybrid composites were built to represent failur...
Fibre-hybrid composites are attracting an ever-increasing interest from academia and industry. It is...
The failure strain of fibre-reinforced composites can be increased by fibre hybridisation. A recentl...
With the title "Unidirectional interply fibre-hybrid composites: longitudinal tensile failure and in...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
Although composite materials are durable, strong and light, their brittleness limits their use in se...
This paper presents an analytical model to predict the stress redistribution around broken fibres in...
In this thesis, a micromechanical model for predicting the tensile failure process in hybrid and non...
The single-fiber composite (SFC) has been widely used to quantify fiber strength and fiber-matrix in...
In this thesis, a micromechanical model for predicting the tensile failure process in hybrid and non...