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Submitted URL: https://ifbb-hannover.de/en/research-project/plasbio-plasma-functionalized-biocomposite-applications.html
Effective URL: https://www.ifbb-hannover.de/en/research-project/plasbio-plasma-functionalized-biocomposite-applications.html
Submission: On December 12 via api from US — Scanned from DE
Effective URL: https://www.ifbb-hannover.de/en/research-project/plasbio-plasma-functionalized-biocomposite-applications.html
Submission: On December 12 via api from US — Scanned from DE
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LinkedIn Twitter YouTube RSS | Deutsch Skip navigation * News * About us * Staff * Areas of expertise * Laboratories and technology centres * Positions * Newsletters * Research Projects * Information on Bioplastics * Facts and Statistics * FAQ – Frequently Asked Questions * Databases * Science Slam * Publications * Flyers and Folders * Videos * Webinars * Press * Conferences and Meetings * Contact Skip navigation * News * About us * Staff * Areas of expertise * Laboratories and technology centres * Positions * Newsletters * Research Projects * Information on Bioplastics * Facts and Statistics * FAQ – Frequently Asked Questions * Databases * Science Slam * Publications * Flyers and Folders * Videos * Webinars * Press * Conferences and Meetings * Contact SEARCH THIS SITE PLASBIO - PLASMA FUNCTIONALIZED BIOCOMPOSITE APPLICATIONS SIMULTANEOUS PLASMA FUNCTIONALIZATION OF NFC THROUGH INNOVATIVE INLINE PROCESS AND REINFORCEMENT OF BIO-HFV TO OPTIMIZE COMPOSITE PROPERTIES The aim of the project is to make the mechanical and thermal properties of natural fiber reinforced plastics and bio-based hybrid fiber composites even more efficient and resistant with innovative plasma treatment and reinforcement. The plasma functionalization should realize a simultaneous plasma modification of the fibers, the polymer matrix in the extrusion process (nature-based short fibers) and in the production process of hotmelt tension bands (nature-based long fibers). The plasma reinforcement on natural fiber-based long and continuous fibers is intended to form a protective layer based on silicates, polymers and metals. Both approaches are designed to maximize long-term durability and material properties under extreme loads (mechanical stress, temperature fluctuations, moisture, UV radiation) and provide the basis for the transfer of natural fiber-based materials into high-performance applications. The implementation of the project takes place across territorial bodies in a cooperation between the University of Göttingen and the Hochschule Hannover - University of Applied Sciences and Arts, which actively involve industrial partners in their respective fields of expertise and work packages. Thus, synergies can be created in the fields of bio-based materials and plasma technology, which have a high innovation and sustainability potential due to their diverse range of applications. PROJECT SUMMARY * Project title: PlasBio - Plasma functionalized biocomposite applications * Sponsorship: NBank * Funding: EFRE * Project management: Prof. Dr.-Ing. Andrea Siebert-Raths * Project partner: University of Applied Sciences and Arts Göttingen, Application Center for Wood Fiber Research HOFZET of Fraunhofer WKI, KraussMaffei Berstorff, DBD-Plasma, TopStrap GmbH * Duration: 01.08.2018 – 31.07.2020 CONTACT Dipl.-Ing. (FH) Marco Neudecker, marco.neudecker@hs-hannover.de IfBB Hannover 2011–2024 Skip navigation Contact Imprint Privacy Policy