Haftmittelfreie, biobasierte Faserverbundwerkstoffe durch UV-unterstützte Grenzflächenvernetzung
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Innovation, Technik, Anwendung
Volume 67 (2024), Edition 4
- Authors:
- , , , , , , , ,
- Publisher
- dfv Mediengruppe, Frankfurt am Main
- Publication year
- 2024
- ISSN-Online
- 0323-3243
- ISSN-Print
- 0323-3243
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Volume 67 (2024), Edition 4
Haftmittelfreie, biobasierte Faserverbundwerkstoffe durch UV-unterstützte Grenzflächenvernetzung
- Authors:
- , , , ,
- ISSN-Print
- 0323-3243
- ISSN-Online
- 0323-3243
- Preview:
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- 1. Müssig, J.; Kelch, M.; Gebert, B.; Hohe, J.; Luke, M.; Bahners, T., Improvement of the fatigue behaviour of cellulose/polyolefin composites using photo-chemical fibre surface modification bio-inspired by natural role models. Cellulose 27 (2020) 10, 5815–5827 Open Google Scholar
- 2. Bahners, T.; Kelch, M.; Gebert, B.; Osorio Barajas, X.L.; Schmidt, T.C.; Müssig, J. et al., Improvement of fibre–matrix adhesion in cellulose/polyolefin composite materials by means of photo-chemical fibre surface modification. Cellulose 25 (2018) 4, 2451–2471 Open Google Scholar
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