The effect of fibre orientation on the fatigue strength of a short glass fibre reinforced polyamide-6 has been investigated. Tension–tension axial fatigue tests were conducted with specimens extracted from injection moulded plates. Specimens were cut out of plates with different orientations with respect to the longitudinal axis of plates, and therefore displayed different orientations of the reinforcing fibres. Results are presented in the form of S–N curves, showing the variation of the fatigue strength as a function of the specimen orientation. The experimental data, both tensile and fatigue tests, have been compared with values predicted by a failure criterion derived from the Tsai–Hill formula. The influence on the fatigue lives of the...
Fibre orientation at notches and fatigue behaviour of short fibre reinforced polyamid
Fatigue behaviour of short fibre reinforced polyamide: morphological and numerical analysis of fibr...
The multiaxial fatigue behaviour of a short glass fibre reinforced polyamide 6.6 (PA66-GF35) is inve...
The effect of fibre orientation on the fatigue strength of a short glass fibre reinforced polyamide-...
The effect of fibre orientation on the fatigue strength of a short glass fibre reinforced polyamide-...
The effect of fibre orientation on the fatigue strength of a short glass fibre reinforced polyamide-...
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 combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The fatigue behaviour of injection moulded short fibre reinforced polymers depends upon fibre orient...
Notched specimens of short fibre reinforced polyamide were injection moulded through different gates...
This work presents an analysis of the effect of the fibre orientation distribution on the fatigue li...
AbstractIn components for the automotive industry, short glass fiber-reinforced thermoplastic parts ...
Fibre orientation at notches and fatigue behaviour of short fibre reinforced polyamid
Fatigue behaviour of short fibre reinforced polyamide: morphological and numerical analysis of fibr...
The multiaxial fatigue behaviour of a short glass fibre reinforced polyamide 6.6 (PA66-GF35) is inve...
The effect of fibre orientation on the fatigue strength of a short glass fibre reinforced polyamide-...
The effect of fibre orientation on the fatigue strength of a short glass fibre reinforced polyamide-...
The effect of fibre orientation on the fatigue strength of a short glass fibre reinforced polyamide-...
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 combined effect of notches and fibre orientation on static and fatigue strength of short glass f...
The fatigue behaviour of injection moulded short fibre reinforced polymers depends upon fibre orient...
Notched specimens of short fibre reinforced polyamide were injection moulded through different gates...
This work presents an analysis of the effect of the fibre orientation distribution on the fatigue li...
AbstractIn components for the automotive industry, short glass fiber-reinforced thermoplastic parts ...
Fibre orientation at notches and fatigue behaviour of short fibre reinforced polyamid
Fatigue behaviour of short fibre reinforced polyamide: morphological and numerical analysis of fibr...
The multiaxial fatigue behaviour of a short glass fibre reinforced polyamide 6.6 (PA66-GF35) is inve...