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  4. Mechanical characterisation and interfacial analysis of continuous flax fibre reinforced unidirectional green composites using filament winding
 
Zitierlink DOI
10.1016/j.compositesa.2025.108940
Verlagslink DOI
10.1016/j.compositesa.2025.108940

Mechanical characterisation and interfacial analysis of continuous flax fibre reinforced unidirectional green composites using filament winding

Veröffentlichungsdatum
2025-07
Autoren
Ronconi, Giulia  
Behrens, A.  
Hirschberg, R.  
Zanelli, Marco
Graupner, Nina  
Müssig, Jörg  
Russo, Pietro
Mollica, F.  
Mazzanti, Valentina
Zusammenfassung
Plant fibre-reinforced biobased thermoplastics (also known as “green composites”) are interesting materials from the point of view of eco-sustainability but still have problems of lower mechanical properties and difficult processability when compared to other more common composite materials, such as continuous glass or carbon fibre-reinforced thermosets. In this paper, unidirectional green composite laminae made of flax fibre-reinforced polylactide (PLA) were obtained through film stacking together with a filament winding process followed by a hot compaction phase. This technique permits to apply pretensioning on the flax rovings before hot compaction to limit possible misalignment. Interfacial properties measurement, analysis of fracture surfaces and a complete tensile mechanical characterisation were performed to evaluate the effectiveness of this procedure. The results showed that a structural composite in the longitudinal direction (∼170 MPa strength) can be obtained that has a low void content, an adequate fibre–matrix macro-impregnation and a limited dispersion in mechanical properties due to the limited fibre misalignment.
Verlag
Elsevier BV
Institution
Hochschule Bremen  
Fachbereich
Hochschule Bremen - Fakultät 5: Natur und Technik  
Dokumenttyp
Wissenschaftlicher Artikel
Zeitschrift/Sammelwerk
Composites Part A: Applied Science and Manufacturing  
ISSN
1359-835X
Band
194
Sprache
Englisch

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