Challenges in Manufacturing of Hemp Fiber-Reinforced Organo Sheets with a Recycled PLA Matrix
Author:
Salmins Maximilian1ORCID, Gortner Florian1, Mitschang Peter1ORCID
Affiliation:
1. Leibniz-Institut für Verbundwerkstoffe GmbH, Erwin-Schroedinger-Strasse 58, 67663 Kaiserslautern, Germany
Abstract
This study investigates the influence of a hot press process on the properties of hemp fiber-reinforced organo sheets. Plain-woven fabric made from hemp staple fiber yarns is used as textile reinforcement, together with a recycled poly-lactic acid (PLA) matrix. Process pressure and temperature are considered with three factor levels for each parameter. The parameter influence is examined based on the B-factor model, which considers the temperature-dependent viscosity of the polymer, as well as the process pressure for the calculation of a dimensionless value. Increasing these parameters theoretically promotes improvements in impregnation. This study found that the considered recycled polymer only allows a narrow corridor to achieve adequate impregnation quality alongside optimal bending properties. Temperatures below 170 °C impede impregnation due to the high melt viscosity, while temperature increases to 185 °C show the first signs of thermal degradation, with reduced bending modulus and strength. A comparison with hemp fiber-reinforced virgin polypropylene, manufactured with identical process parameters, showed that this reduction can be mainly attributed to polymer degradation rather than reduction in fiber properties. The process pressure should be at least 1.5 MPa to allow for sufficient compaction of the textile stack, thus reducing theoretical pore volume content to a minimum.
Funder
Federal Ministry of Food and Agriculture
Subject
Polymers and Plastics,General Chemistry
Reference57 articles.
1. Manaia, J.P., Manaia, A.T., and Rodriges, L. (2019). Industrial Hemp Fibers: An Overview. Fibers, 7. 2. Kamarudin, S.H., Mohd Basri, M.S., Rayung, M., Abu, F., Ahmad, S., Norizan, M.N., Osman, S., Sarifuddin, N., Desa, M.S.Z.M., and Abdullah, U.H. (2022). A Review on Natural Fiber Reinforced Polymer Composites (NFRPC) for Sustainable Industrial Applications. Polymers, 14. 3. A review on applications of natural Fiber-Reinforced composites (NFRCs);Kumar;Mater. Today Proc.,2022 4. Carus, M., and Partanen, A. (2019). Bioverbundwerkstoffe—Naturfaserverstärkte Kunststoffe (NFK) und Holz-Polymer-Werkstoffe (WPC), Fachagentur Nachwachsende Rohstoffe e.V. (FNR). 5. Thielen, M. (2020). Biokunststoffe—Pflanzen, Rohstoffe, Produkte, Fachagentur Nachwachsende Rohstoffe e.V. (FNR).
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