PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Biocomposites in the Past and in the Future

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Biokompozyty przeszłość i przyszłość
Języki publikacji
EN
Abstrakty
EN
Due to the increasing environmental awareness nowadays biocomposites are becoming as important and prevalent materials as they were centuries ago. The development of high-performance engineering products made from natural resources is increasing worldwide. Natural fibre composites have become more and more efficient as new compositions and their processing methods are being intensively researched, developed and consequently applied. This paper, above all, is intended to provide a brief outline of the development and modification trends which aim to make biocomposites more user-friendly and eco-friendly by means of novel processing methods. These methods produce biopolymers with an improved melt behaviour and use naturally occurring raw materials.
Rocznik
Strony
15--22
Opis fizyczny
Bibliogr. 29 poz., rys., tab., wykr.
Twórcy
  • Poland, Szczecin, West Pomeranian University of Technology, Institute of Materials Science and Engineering
  • Germany, Kassel, Universität Kassel, Institut für Werkstofftechnik,
  • Germany, Kassel, Universität Kassel, Institut für Werkstofftechnik,
autor
  • Poland, Szczecin, West Pomeranian University of Technology, Institute of Materials Science and Engineering, Department of Mechanics and Machine Elements
  • Poland, Szczecin, Pomeranian Medical University in Szczecin, Medicinal Chemistry Department
Bibliografia
  • 1. Dynamic Plastics - Vom Bakelite zum High Plast, Katalog zur Ausstellung im Landesmuseum Volk und Wirtschaft, Düsseldorf 2.11.-8.12.1989, Herausgegeben vom Kunststoff-Museums-Verein e.V., Redaktion: Günther Erdmann, Verlag: Dr. Neufang KG, Gelsenkirchen.
  • 2. Daenens L, Bucquoye M, Verpoest I. From Bakelite to Composite: Design in New Materials, StichtingKunstboekBvba, 2002.
  • 3. Jaszkiewicz A.: Werkstoffliche Verwendung von Nachwachsenden Rohstoffen für Technische AnwendungenTTN-Jahrestagung, Workshop 2: Biomaterialien, Universität Kassel, 07. September 2009, Kassel.
  • 4. Satyanarayana KG, Arizaga GGC, Wypych F. Prog. Polym. Sci. 2009; 34, 9: 982–1021.
  • 5. Suddell BC, Evans WJ. Natural fiber composites in automotive applications, 2005, Chapter 7 in Natural Fibers, Biopolymers and Biocomposites, eds.A.K. Mohanty, M. Misra, L.T. Drzal, USA.
  • 6. Bledzki AK, Faruk O, Jaszkiewicz A. Composites 2010; 10, 3: 282-288.
  • 7. Maya J, Sabu T. Carbohydrate Polymers 2008; 71: 343-364.
  • 8. “OK biobased” certification: http://www. okcompost.be/
  • 9. “DIN CERTCO” certification: http://www. dincertco.de/
  • 10. “USDA-Certified Biobased Products”: http://www.biopreferred.gov/Biobased_ Products.aspx/
  • 11. Raschka A, Carus M. Industrial material use of biomass basic data for Germany, Received 16.10.2012 Reviewed 30.11.2012 Europe and the world, NOVA-Institut, 2012.
  • 12. Gassan J, Bledzki AK. Composites Part A 1997; 28, 12: 1001-1005. 13. Bledzki AK, Gassan J. Prog Polym Sc 1999; 24, 2: 221- 274.
  • 14. Chakraborty A, Sain M, Kortschot M. ASC Symp Series 2006; 938: 169-186. 15. Hornsby PR, Hinrichsen E, Tarverdi K. J Mater Sci 1997; 32: 1009–1015.
  • 16. Thakur VK, Singha AS. Bull Mater Sci 2010; 33, 3: 257-264.
  • 17. Bledzki AK, Jaszkiewicz A, Scherzer D. Bioplastics Magazine 2008; 3, 2: 12-15.
  • 18. Faruk O, Bledzki AK, Fink HP, Sain M. Prog Polym Sci 2012; 37, 11: 1552-1596.
  • 19. Kozłowski R, Władyka-Przybylak A, Kicińska-Jakubowska A. 7th Global WPC and Natural Fibre Composites Congress and Exhibition, A14, June 18- 19, 2008 in Kassel, Germany.
  • 20. Brouwer WD. Natural Fibre Composites in Structural Components: Alternative Applications for Sisal? In: Proceedings of a seminar held by the UN(FAO) and CFC, Rome 2000.
  • 21. Raven PH, Evert RF, Eichhorn SE. Biologie der Pflanzen. Walter de Gruyter, Berlin, 2000.
  • 22. Jaszkiewicz A, Bledzki AK. Polymers from Renewable Raw Materials – Today and Tomorrow, Humboldt College, Collegium Polonicum Frankfurt (Oder)/Slubice 13-15 November 2008.
  • 23. Kolybaba M, Tabil LG, Panigrahi S, Crerara WJ, Powell T, Wang B. ASAE Meeting, RRV03-0007, (2003), 1-15.
  • 24. Jaszkiewicz A. Gegenüberstellung von biobasierten Polylactid- und Polypropylen- Compositen- Funktionsadditive, Cellulose- und Glasfasern, Prozessführung. Dissertation, Universität Kassel, 2011, ISBN 978-83-7815-404-4.
  • 25. Awojulu A, Edison M, Frenz V, Scherzer D, Van der Meer R, Villalobos M. Multifunctional Polymers as Chain Extenders and Compatiblizers for Polycondensates and Biopolymers, In: Proc. Society of Plastics Engineers Annual Technical Conference, ANTEC-0993-2008.R1, Milwaukee, Wisconsin, USA, 22- 24.06.2008.
  • 26. Bledzki AK, Jaszkiewicz A, Feldmann M. Biopolymere zu Biokunstoffen und Biocompositen verarbeiten – eine Herausforderung moderner Kunststofftechnik, Biopolymer Kolloquium, Germany, Berlin, 25 January 2011.
  • 27. Worldwide market of bio-composites 2009–2016: http://www.bccresearch. com/.
  • 28. Global production capacity of bioplastics 2009–2016: http://en.european-bioplastics. org/.
  • 29. Faruk O, Bledzki AK, Fink H-P, Sain M. Biobased Materials - 9th Global WPC, Natural Fibreand other innovative Composites Congress, PL3, June 19-20, 2012 in Stuttgart, Germany.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-05578d5f-2841-4820-af0a-13460493235a
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.