This paper presents the experimental results of tension-tension stress-controlled fatigue tests performed on advanced sheet molding compound (A-SMC). It aims at analyzing the effect of fiber orientation, loading amplitude, and frequency on the fatigue response and the related temperature evolution due to the self-heating phenomenon. Two types of A-SMC have been analyzed: randomly oriented (RO) and highly oriented (HO). The coupled effect of the loading amplitude and the frequency has been studied. It has been shown that the couple frequency-amplitude affects the nature of the fatigue overall response which can be governed by the damage mechanisms accumulation (mechanical fatigue) and/or by the self-heating (induced thermal fatigue). For fat...
This paper presents the results of an overall experimental characterization of the mechanical behavi...
Hybrid continuous-discontinuous sheet molding compound (SMC) composites are considered suitable cand...
Advanced Sheet Molding Compound (A-SMC) is a serious composite material candidate for structural aut...
International audienceThis paper presents the experimental results of tension-tension stress-control...
Static and fatigue properties of high glass content sheet molding compound (SMC) materials were stud...
The paper presents an experimental analysis of the anisotropic effects of the structural advanced ca...
The purpose of this article is to investigate the effect of an initial pre-damage induced by a fatig...
In this study, the fatigue behavior of polyamide 66 reinforced with short glass fibers and especiall...
Sheet Molding Compounds (SMCs) with special microstructures are very attractive to use in automobile...
AbstractBased on data from experimental investigations with flat specimens made of sheet Moulding Co...
Sheet molding compounds (SMC) are discontinuously fiber-reinforced thermosets, attractive to the aut...
Because of the high variability of SMC microstructure due to material flow during thermoforming, fat...
An experimental study was conducted to evaluate the effect of frequency and self-heating on fatigue ...
In this work, the fatigue behavior of short glass fibers reinforced polyamide 66 has been investigat...
The objective of this work is to identify and to analyze the main micro-mechanisms which govern the ...
This paper presents the results of an overall experimental characterization of the mechanical behavi...
Hybrid continuous-discontinuous sheet molding compound (SMC) composites are considered suitable cand...
Advanced Sheet Molding Compound (A-SMC) is a serious composite material candidate for structural aut...
International audienceThis paper presents the experimental results of tension-tension stress-control...
Static and fatigue properties of high glass content sheet molding compound (SMC) materials were stud...
The paper presents an experimental analysis of the anisotropic effects of the structural advanced ca...
The purpose of this article is to investigate the effect of an initial pre-damage induced by a fatig...
In this study, the fatigue behavior of polyamide 66 reinforced with short glass fibers and especiall...
Sheet Molding Compounds (SMCs) with special microstructures are very attractive to use in automobile...
AbstractBased on data from experimental investigations with flat specimens made of sheet Moulding Co...
Sheet molding compounds (SMC) are discontinuously fiber-reinforced thermosets, attractive to the aut...
Because of the high variability of SMC microstructure due to material flow during thermoforming, fat...
An experimental study was conducted to evaluate the effect of frequency and self-heating on fatigue ...
In this work, the fatigue behavior of short glass fibers reinforced polyamide 66 has been investigat...
The objective of this work is to identify and to analyze the main micro-mechanisms which govern the ...
This paper presents the results of an overall experimental characterization of the mechanical behavi...
Hybrid continuous-discontinuous sheet molding compound (SMC) composites are considered suitable cand...
Advanced Sheet Molding Compound (A-SMC) is a serious composite material candidate for structural aut...