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Potential Analysis for the Use of Bio-Based Plastics with Natural Fiber Reinforcement in Additive Manufacturing

  • Plastics are used today in many areas of the automotive, aerospace and mechanical engineering industries due to their lightweight potential and ease of processing. Additive manufacturing is applied more and more frequently, as it offers a high degree of design freedom and eliminates the need for complex tools. However, the application of additively manufactured components made of plastics have soPlastics are used today in many areas of the automotive, aerospace and mechanical engineering industries due to their lightweight potential and ease of processing. Additive manufacturing is applied more and more frequently, as it offers a high degree of design freedom and eliminates the need for complex tools. However, the application of additively manufactured components made of plastics have so far been limited due to their comparatively low strength. For this reason, processes that offer additional reinforcement of the plastic matrix using fibers made of high-strength materials have been developed. However, these components represent a composite of different materials produced on the basis of fossil raw materials, which are difficult to recycle and generally not biodegradable. Therefore, this paper will explore the potential for new composite materials whose matrix consists of a bio-based plastic. In this investigation, it is assumed that the matrix is reinforced with a fibrous material made of natural fiber to significantly increase the strength. This potential material should offer a lightweight yet strong structure and be biodegradable after use under controlled conditions. Therefore, the state of the art in the use of bio-based materials in 3D printing is first presented. In order to determine the economic boundary conditions, the growth potentials for bio-based materials are analyzed. Also, the recycling prospects for bio-based plastics will also be highlighted. The greenhouse gas emissions and land use to be expected when using bio-based materials are also estimated. Finally, the degradability of the composites is discussed.zeige mehrzeige weniger

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Dokumentart:Konferenzveröffentlichung
Art der Konferenzveröffentlichung:Konferenzartikel
Zitierlink: https://opus.hs-offenburg.de/7659
Bibliografische Angaben
Titel (Englisch):Potential Analysis for the Use of Bio-Based Plastics with Natural Fiber Reinforcement in Additive Manufacturing
Konferenzangaben:Global Conference on Sustainable Manufacturing (18. : October 5-7, 2022 : Berlin)
Verfasserangaben:Andreas FriedelStaff MemberORCiDGND, Stefan JunkStaff MemberORCiDGND
Erscheinungsjahr:2023
Verlagsort:Cham
Verlag:Springer
Erste Seite:285
Letzte Seite:293
Titel des übergeordneten Werkes (Englisch):Manufacturing Driving Circular Economy : Proceedings of the 18th Global Conference on Sustainable Manufacturing
Herausgeber*in:Holger Kohl, Günther Seliger, Franz Dietrich
ISBN:978-3-031-28838-8 (Softcover)
ISBN:978-3-031-28839-5 (eBook)
DOI:https://doi.org/10.1007/978-3-031-28839-5_32
Sprache:Englisch
Inhaltliche Informationen
Fakultäten / Einrichtungen:Fakultät Wirtschaft (W)
Sammlungen der Hochschule Offenburg:Bibliografie
DDC-Sachgruppen:600 Technik, Medizin, angewandte Wissenschaften
Freies Schlagwort / Tag:Additive Manufacturing; Bio-based materials; Bio-based plastics; Degradability; Fiber reinforcement; Natural fibers
Formale Angaben
Relevanz für "Jahresbericht über Forschungsleistungen":1-fach | Konferenzbeitrag
Open-Access-Status: Open Access 
 Gold 
Lizenz (Deutsch):License LogoCreative Commons - CC BY - Namensnennung 4.0 International