Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) matrix were manufactured using a film-stacking method. The influence of fibre content on stiffness and strength is reported and compared with data for glass-mat-reinforced-thermoplastics (GMTs), including the influence of improved fibre/matrix adhesion as a result of the use of maleic-anhydride grafted PP. Additionally, unidirectional and random-flax-mat composites based on epoxy resin were manufactured as reference materials. Results indicated that NMTs are of interest for low cost engineering applications, especially when a high stiffness per unit weight is desirabl
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Thermoplastic composites based on flax fibres and a polypropylene (PP) matrix were manufactured usin...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Thermoplastic composites based on flax fibres and a polypropylene (PP) matrix were manufactured usin...
Thermoplastic composites based on flax fibres and a polypropylene (PP) matrix were manufactured usin...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Thermoplastic composites based on flax fibres and a polypropylene (PP) matrix were manufactured usin...
This study investigates the influence of the physical structure of flax fibres on the mechanical pro...
PhDThis thesis examines the possibility of reinforcing thermoplastic matrices, notably polypropylen...
Semi-consolidated thermoplastic tapes were produced by spreading flax and polypropylene matrix fibre...
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Thermoplastic composites based on flax fibres and a polypropylene (PP) matrix were manufactured usin...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Thermoplastic composites based on flax fibres and a polypropylene (PP) matrix were manufactured usin...
Thermoplastic composites based on flax fibres and a polypropylene (PP) matrix were manufactured usin...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Natural-fibre-mat-reinforced thermoplastics (NMTs) based on flax fibres and a polypropylene (PP) mat...
Thermoplastic composites based on flax fibres and a polypropylene (PP) matrix were manufactured usin...
This study investigates the influence of the physical structure of flax fibres on the mechanical pro...
PhDThis thesis examines the possibility of reinforcing thermoplastic matrices, notably polypropylen...
Semi-consolidated thermoplastic tapes were produced by spreading flax and polypropylene matrix fibre...
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...
The environmental degradation behaviour of flax fibres and their polymer composites are explored. Ne...