In short‐fiber reinforced polymers, fatigue damage is typically characterized by measuring the dynamic stiffness and its degradation under cyclic loading. Computational homogenization methods may be used to characterize the fatigue behavior of the composite via numerical predictions. Such an approach may reduce the experimental effort significantly. In the previous works, the authors proposed an elastic fatigue damage model for predicting the relative stiffness degradation of short‐fiber reinforced materials. However, the absolute value of the dynamic stiffness within the first cycle showed deviations from the expected elastic material behavior. Thus, the effect of viscoelastic polymer behavior as well as different microstructure descriptor...
Dans l'objectif d'améliorer la compréhension du comportement mécanique des thermoplastiques renforcé...
This work presents a new micromechanical fatigue damage model for reinforced thermoplastic composite...
Recently there has been a drive to replace traditional engineering materials with polymeric solution...
In short‐fiber reinforced polymers, fatigue damage is typically characterized by measuring the dynam...
Under fatigue loading, the stiffness decrease in short-fiber reinforced polymers reflects the gradua...
Characterizing short-fiber reinforced polymers under high-cycle fatigue loading is a tedious experim...
In this work, we investigate a model for the anisotropic and loading-direction dependent stiffness d...
Due to a lack of knowledge and robustness in current design processes regarding the fatigue behavior...
The viscoelastic behavior of short fiber reinforced polymers (SFRPs) partly depends on different mic...
Under fatigue-loading, short-fiber reinforced thermoplastic materials typically show a progressive d...
Short fiber composites, are extensively used in numerous industrial fields, and especially in the au...
The hypothesis of this work is that the fatigue behavior of a composite material is governed by its ...
Reinforced and unreinforced thermoplastic polymers (TPs) are widely used in a range of industrial se...
AbstractThis paper proposes a numerical model of the fatigue damage process in short fiber-reinforce...
Ease of manufacturing and favorable performance properties at a low weight make short fiber reinforc...
Dans l'objectif d'améliorer la compréhension du comportement mécanique des thermoplastiques renforcé...
This work presents a new micromechanical fatigue damage model for reinforced thermoplastic composite...
Recently there has been a drive to replace traditional engineering materials with polymeric solution...
In short‐fiber reinforced polymers, fatigue damage is typically characterized by measuring the dynam...
Under fatigue loading, the stiffness decrease in short-fiber reinforced polymers reflects the gradua...
Characterizing short-fiber reinforced polymers under high-cycle fatigue loading is a tedious experim...
In this work, we investigate a model for the anisotropic and loading-direction dependent stiffness d...
Due to a lack of knowledge and robustness in current design processes regarding the fatigue behavior...
The viscoelastic behavior of short fiber reinforced polymers (SFRPs) partly depends on different mic...
Under fatigue-loading, short-fiber reinforced thermoplastic materials typically show a progressive d...
Short fiber composites, are extensively used in numerous industrial fields, and especially in the au...
The hypothesis of this work is that the fatigue behavior of a composite material is governed by its ...
Reinforced and unreinforced thermoplastic polymers (TPs) are widely used in a range of industrial se...
AbstractThis paper proposes a numerical model of the fatigue damage process in short fiber-reinforce...
Ease of manufacturing and favorable performance properties at a low weight make short fiber reinforc...
Dans l'objectif d'améliorer la compréhension du comportement mécanique des thermoplastiques renforcé...
This work presents a new micromechanical fatigue damage model for reinforced thermoplastic composite...
Recently there has been a drive to replace traditional engineering materials with polymeric solution...