Identyfikatory
DOI
Warianty tytułu
Języki publikacji
Abstrakty
Polyester-glass composites are widely used in many industries, in various types of constructions, including dynamically loaded ones. This article examines the influence of the content of a glass-polyester recycled additive on the strength properties of layered composites. The recyclate was polyester-glass waste, which was pre-crushed and then milled into the appropriate fractions. Manual laminating technology was used to make the materials. The composite materials were made with a waste content of 0%, 10%, 20% and granulations of ≥ 1.2 mm and ≥ 3 mm. Samples for testing were prepared in accordance with the PN-EN ISO 179-1: 2010E standard (Plastics – Charpy Impact Assessment – Part 1: Non-instrumental impact test). Impact tests of the samples were performed using the Charpy method with the Zwick Roell RKP450 swinging hammer. The test results showed that the addition of polyester-glass recyclate, its content %, and its granulation size, have an impact on the composite resistance to loads in dynamic tests.
Rocznik
Tom
Strony
36--40
Opis fizyczny
Bibliogr. 19 poz., rys.
Twórcy
autor
- Gdynia Maritime University, Faculty of Marine Engineering, Department of Engineering Sciences 81-87 Morska St., 81-581 Gdynia, Poland
autor
- Gdynia Maritime University, Faculty of Marine Engineering, Department of Engineering Sciences 81-87 Morska St., 81-581 Gdynia, Poland
Bibliografia
- 1. Asokan P., Osmani, M. & Price, A.D.F. (2009) Assessing the recycling potential of glass fibre reinforced plastic waste in concrete and cement composites. Journal of Cleaner Production 17 (9), pp. 821–829.
- 2. Barcikowski, M. & Królikowski, W. (2013) Effect of resin modification on the impact strength of glass-polyester composites. Polimery 58(6), pp. 450–460.
- 3. Bignozzi, M.C., Saccani, A. & Sandrolini, F. (2000) New polymer mortars containing polymeric wastes. Part 1. Microstructure and mechanical properties. Composites Part A: Applied Science and Manufacturing 31, 2, pp. 97–106.
- 4. Błędzki, A.K., Gorący, K. & Urbaniak, M. (2012) Possibilities of recycling and utylisation of the polymeric materials and composite products. Polimery 57, 9, pp. 620–626 (in Polish).
- 5. Gawdzińska, K., Szymański, P., Bryll, K., Pawłowska, P. & Pijanowski, M. (2017) Flexural strength of hybrid epoxy composites with carbon fiber. Composites Theory and Practice 1, pp. 47–50.
- 6. Gucma, M., Bryll, K., Gawdzińska, K., Przetakiewicz, W. & Piesowic, E. (2015) Technology of single polymer polyester composites and proposals for their recycling. Scientific Journals of the Maritime University of Szczecin, Zeszyty Naukowe Akademii Morskiej w Szczecinie 44 (116), pp. 14–18.
- 7. Habaj, W. (2008) The technological work over the production of polymer composites reinforced by short aramide fibres. Problemy Techniki Uzbrojenia 37, 105, pp. 61–73 (in Polish).
- 8. Hyla, I. (1989) Beitrag zum Schädigungs – und Bruchverhalten von faserverstärkten Verbndwerkstoffen. Hutnictwo 33.
- 9. Hylla, I. & Lizurek, A. (2002) Zastosowanie badań dynamicznych do analizy mechanizmu pękania udarowego kompozytów warstwowych. Kompozyty (Composites) 5, pp. 374–377.
- 10. Jastrzębska, M. & Jurczak, W. (2011) Modification of composites containing glass reinforced polyester waste. Przetwórstwo Tworzyw 17, 6, pp. 460–463 (in Polish).
- 11. Jastrzębska, M. (2011) Effect of nanofiller NanoBent® ZW1 on mechanical properties of composites containing glass reinforced polyester waste. Kompozyty (Composites) 2, pp. 111–113.
- 12. Kowalska, E., Wielgosz, Z. & Bartczak, T. (2002) Utilization of glass fiber-reinforced polyester laminate wastes. Polimery 47, 2, pp. 110–116 (in Polish).
- 13. Królikowski, W. (2012) Polimerowe kompozyty konstrukcyjne. Warszawa: PWN.
- 14. Kyzioł, L., Panasiuk, K. & Hajdukiewicz, G. (2018) The influence of granulation and content of polyester-glass waste on properties of composites. Journal of KONES 4.
- 15. Panasiuk, K. & Hajdukiewicz, G. (2017) Production of composites with added waste polyester-glass with their initial mechanical properties. Scientific Journals of the Maritime University of Szczecin, Zeszyty Naukowe Akademii Morskiej w Szczecinie 52 (124), pp. 30–36.
- 16. Panasiuk, K. (2018) Analysis of technologies for producing composites with polyester-glass recyclate. Scientific Journal of Polish Naval Academy 214(3), pp. 63–73.
- 17. Pickering, S.J. (2016) Recycling technologies for thermoset composite materials – current status. Composites Part A: Applied Science and Manufacturing 37, 8, pp. 1206– 1215.
- 18. Rutecka, M., Kozioł, M., Myalski, J. & Śleziona, J. (2005) Utilization of composite wastes as a filler of polymer matrix in composites. Kompozyty (Composites) 2, pp. 68–73 (in Polish).
- 19. Rutecka, M., Śleziona, J. & Myalski, J. (2004) Estimation of possibility of using polyester-glass fiber recyclate in laminates production. Kompozyty (Composites) 9, pp. 56–60 (in Polish).
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b3d52282-cd41-498b-9bd5-38ce28ebc644