Carbon fibre composites possess excellent mechanical properties, but suffer from brittleness. Hybridisation with self-reinforced polypropylene (SRPP) is a promising strategy to introduce ductility into carbon fibre-reinforced polypropylene (CFRPP). The present work demonstrates how different damage mechanisms in these hybrid composites change as a function of the carbon fibre volume fraction, the directionality of CFRPP and SRPP and their relative layer thickness. Multiple fractures of the CFRPP layers or “fragmentation” is achieved by optimising these parameters. This leads to a ductile hybrid composite with a gradual failure development.status: publishe
In this work, we investigate the toughness of an inter-layer Self-Reinforced Polypropylene/Carbon Fi...
Carbon fibre reinforced polymers often suffer from limited toughness. To drastically increase their ...
Combining a reasonable stiffness and a high ultimate failure strain in a single material is challeng...
Carbon fibre composites possess excellent mechanical properties, but suffer from brittleness. Hybrid...
Carbon fibre composites possess excellent mechanical properties, but suffer from brittleness. Hybrid...
Carbon fiber layer failure is vital for the tensile behavior of interlayer hybrid carbon fiber (CF)/...
The present work investigates the tensile properties of a novel type of hybrid composites that conta...
The use of carbon fibre-reinforced composites has been growing exponentially in the past few decades...
Combining a reasonable stiffness and a high ultimate failure strain in a single material is challeng...
Fibre cuts were introduced into carbon fibre/self-reinforced polypropylene (SRPP) to achieve more co...
Carbon fibre reinforced polymers (CFRPs) have high strength and stiffness, low density, long fatigue...
This work explores the potential of discontinuities combined with hybridization in controlling the f...
Conventional fiber-reinforced polymer composites are either stiff but suffer from sudden brittle fai...
Polymer composites are usually either stiff or tough, but seldom both. Intralayer hybrids of carbon ...
© 2017 International Committee on Composite Materials. All rights reserved. Both discontinuous fiber...
In this work, we investigate the toughness of an inter-layer Self-Reinforced Polypropylene/Carbon Fi...
Carbon fibre reinforced polymers often suffer from limited toughness. To drastically increase their ...
Combining a reasonable stiffness and a high ultimate failure strain in a single material is challeng...
Carbon fibre composites possess excellent mechanical properties, but suffer from brittleness. Hybrid...
Carbon fibre composites possess excellent mechanical properties, but suffer from brittleness. Hybrid...
Carbon fiber layer failure is vital for the tensile behavior of interlayer hybrid carbon fiber (CF)/...
The present work investigates the tensile properties of a novel type of hybrid composites that conta...
The use of carbon fibre-reinforced composites has been growing exponentially in the past few decades...
Combining a reasonable stiffness and a high ultimate failure strain in a single material is challeng...
Fibre cuts were introduced into carbon fibre/self-reinforced polypropylene (SRPP) to achieve more co...
Carbon fibre reinforced polymers (CFRPs) have high strength and stiffness, low density, long fatigue...
This work explores the potential of discontinuities combined with hybridization in controlling the f...
Conventional fiber-reinforced polymer composites are either stiff but suffer from sudden brittle fai...
Polymer composites are usually either stiff or tough, but seldom both. Intralayer hybrids of carbon ...
© 2017 International Committee on Composite Materials. All rights reserved. Both discontinuous fiber...
In this work, we investigate the toughness of an inter-layer Self-Reinforced Polypropylene/Carbon Fi...
Carbon fibre reinforced polymers often suffer from limited toughness. To drastically increase their ...
Combining a reasonable stiffness and a high ultimate failure strain in a single material is challeng...