This paper investigates the influence of the fiber volume fraction on the damage evolution in a short glass fiber reinforced polyamide (PA66) under tension-tension fatigue loading. Uniaxial fatigue tests were carried out on notched specimens characterized by different fiber contents (0%, 15%, 25%, 35%, 50% in weight). The notch was created through an insert within the mold in order to reproduce a typical fiber orientation distribution occurring in the real world components. A damage investigation was performed by using Field Emission Scanning Electron Microscopy (FESEM). Interrupted fatigue tests were carried out to analyze the profile of the crack. Fracture surfaces of specimens failed in the high cycle regime were also examined. The damag...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
This paper aims at studying fatigue damage behavior of injection molded 30 wt% short glass fiber rei...
AbstractShort glass fibre reinforced thermoplastics are promising materials for weight reduction of ...
International audienceThis paper aims at studying fatigue damage behavior of injection molded 30 wt%...
The aim of the present paper is to study and model the fatigue behavior of short glass fibers reinfo...
The aim of the present paper is to study and model the fatigue behavior of short glass fibers reinfo...
The objective of this work is to identify and to analyze the main micro-mechanisms which govern the ...
This work aims at completing the existing description and understanding of the fatigue behavior and ...
International audienceThis work presents a micromechanical fatigue damage model developed for short ...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The growth of composite materials is closely linked to the demands of the transportation industry fo...
AbstractFatigue life prediction requires thorough understanding of the deformation and damage mechan...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
This paper aims at studying fatigue damage behavior of injection molded 30 wt% short glass fiber rei...
AbstractShort glass fibre reinforced thermoplastics are promising materials for weight reduction of ...
International audienceThis paper aims at studying fatigue damage behavior of injection molded 30 wt%...
The aim of the present paper is to study and model the fatigue behavior of short glass fibers reinfo...
The aim of the present paper is to study and model the fatigue behavior of short glass fibers reinfo...
The objective of this work is to identify and to analyze the main micro-mechanisms which govern the ...
This work aims at completing the existing description and understanding of the fatigue behavior and ...
International audienceThis work presents a micromechanical fatigue damage model developed for short ...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The growth of composite materials is closely linked to the demands of the transportation industry fo...
AbstractFatigue life prediction requires thorough understanding of the deformation and damage mechan...
The combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
This paper aims at studying fatigue damage behavior of injection molded 30 wt% short glass fiber rei...
AbstractShort glass fibre reinforced thermoplastics are promising materials for weight reduction of ...