The simulation of long life behavior and environmental aging effects on composite materials are subjects of investigation for future aerospace applications (i.e. supersonic commercial aircrafts). Temperature variation in addition to matrix oxidation involves material degradation and loss of mechanical properties. Crack initiation and growth is the main damage mechanism. In this paper, an extended finite element analysis is proposed to simulate damage on carbon fiber reinforced polymer as a consequence of thermal fatigue between −50℃ and 150℃ under atmospheres with different oxygen content. The interphase effect on the degradation process is analyzed at a microscale level. Finally, results are correlated with the experimental data in terms o...
This paper proposes a theoretical approach to predict the failure behavior of laminated carbon fiber...
The paper provides an insight on the evolution of mechanical properties of CFRP materials for aerona...
The process of fatigue fracture of carbon fibres reinforced plastic under compressive loads is consi...
The simulation of long life behavior and environmental aging effects on composite materials are subj...
A multi-scale mechanism-based life prediction model is developed for high-temperature polymer matrix...
Carbon fiber reinforced plastics (CFRP) are potential materials for many aerospace and aeronautical ...
A life prediction model is being developed by the authors for application to metal matrix composites...
Most of the existing fatigue models for fibre reinforced polymers are limited to a specific use case...
A multi-scale mechanism-based life prediction model is developed for high-temperature polymer matrix...
Exposing a laminate structure to thermal cycles and to temperatures close to the curing temperature,...
In the next future, the employment of organic matrix/carbon fibre composites (OMC) is foreseen for t...
International audienceThe work focuses on “multi-physical” fatigue of laminated model “cross-ply” [0...
In many industrial applications, structures made of fiber reinforced plastics are not only exposed ...
Thermo-mechanical behavior of high-temperature polymer matrix composites is determined by thermal tr...
This paper presents the development, calibration and finite element implementation of a novel set of...
This paper proposes a theoretical approach to predict the failure behavior of laminated carbon fiber...
The paper provides an insight on the evolution of mechanical properties of CFRP materials for aerona...
The process of fatigue fracture of carbon fibres reinforced plastic under compressive loads is consi...
The simulation of long life behavior and environmental aging effects on composite materials are subj...
A multi-scale mechanism-based life prediction model is developed for high-temperature polymer matrix...
Carbon fiber reinforced plastics (CFRP) are potential materials for many aerospace and aeronautical ...
A life prediction model is being developed by the authors for application to metal matrix composites...
Most of the existing fatigue models for fibre reinforced polymers are limited to a specific use case...
A multi-scale mechanism-based life prediction model is developed for high-temperature polymer matrix...
Exposing a laminate structure to thermal cycles and to temperatures close to the curing temperature,...
In the next future, the employment of organic matrix/carbon fibre composites (OMC) is foreseen for t...
International audienceThe work focuses on “multi-physical” fatigue of laminated model “cross-ply” [0...
In many industrial applications, structures made of fiber reinforced plastics are not only exposed ...
Thermo-mechanical behavior of high-temperature polymer matrix composites is determined by thermal tr...
This paper presents the development, calibration and finite element implementation of a novel set of...
This paper proposes a theoretical approach to predict the failure behavior of laminated carbon fiber...
The paper provides an insight on the evolution of mechanical properties of CFRP materials for aerona...
The process of fatigue fracture of carbon fibres reinforced plastic under compressive loads is consi...