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Influence of density on selected properties of furniture particleboards made of raspberry Rubus idaeus L. lignocellulosic particles

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Języki publikacji
EN
Abstrakty
EN
Influence of density on selected properties of furniture particleboards made of raspberry Rubus idaeus L. lignocellulosic particles. The aim of the research was to determine the effect of density of three layer furniture particleboard, produced in laboratory conditions, in the three different densities: 500, 650 and 800 kg/m3, on their selected mechanical and physical properties. The fraction share of the particles used, as well as bulk density of the produced particles have been also measured. The tests have shown that with increasing density of the tested panels in the mentioned range, there is a significant improvement of mechanical parameters, but the thickness swelling of the panels unfavorably raises. The density increase causes also changes in density profile.
PL
Wpływ gęstości na wybrane właściwości płyt wiórowych dla meblarstwa wytworzonych z cząstek lignocelulozowych maliny Rubus idaeus L. Celem badań było określenie wpływu gęstości trójwarstwowych płyt wiórowych dla meblarstwa, wytworzonych w warunkach laboratoryjnych, przy trzech różnych gęstościach: 500, 650 i 800 kg/m3, na ich wybrane właściwości mechaniczne i fizyczne. Dodatkowo scharakteryzowano skład frakcyjny oraz gęstość nasypową wytworzonych wiórów. Badania wykazały, że wraz ze wzrostem gęstości badanych płyt wiórowych we wspomnianym zakresie, następuje znacząca poprawa parametrów wytrzymałościowych płyt, jednak dochodzi również do niekorzystnego wzrostu spęcznienia. Zarysowują się również różnice w profilach gęstości badanych płyt.
Twórcy
  • Department of Technology and Entrepreneurship in Wood Industry, Faculty of Wood Technology, Warsaw University of Life Sciences – SGGW
autor
  • Department of Technology and Entrepreneurship in Wood Industry, Faculty of Wood Technology, Warsaw University of Life Sciences – SGGW
Bibliografia
  • 1. AYRILMIS, N., KWON, J.H., HAN, T. H., 2012: Effect of resin type and contenton properties of composite particleboard made of a mixture of wood and rice husk.International Journal of Adhesion & Adhesives 38: 79-83.
  • 2. EN 310: 1993 Wood – based panels: Determination of modulus of elasticityin bending and of bending strength.
  • 3. EN 312: 2010 Particleboards. Specifications.
  • 4. EN 317: 1993 Particleboards and fibreboards – Determination of swelling in thicknessafter immersion in water.
  • 5. EN 319: 1993 Particleboards and fibreboards – Determination of tensile strengthperpendicular to the plane of the board.
  • 6. EN 320: 2011 Particleboards and fibreboards. Determination of resistance to axialwithdrawal of screws.
  • 7. GARCÍA-ORTUÑO, T., ANDRÉU-RODRÍGUEZ, J., FERRÁNDEZ-GARCÍA,M.T., FERRÁNDEZ-VILLENA, M., FERRÁNDEZ-GARCÍA, E., 2011: Evaluationof the physical and mechanical properties of particleboard made from Giant reed(Arundo donax L.). BioResurces 6(1): 477-486.
  • 8. GHALEHNO, M.D., MADHOUSHI, M., TABARSA, T., NAZERIAN, M., 2010: Themanufacture of particleboards using mixture of reed (surface layer) and commercialspecies (middle layer). Eur. J. Wood Prod., Volume 69, Issue 3: 341-344.
  • 9. GULER, C., BEKTAS, I., KALAYCIOGLU, H., 2006: The experimentalparticleboard manufacture from sunflower stalks (Helianthus annuus L.) andCalabrian pine (Pinus brutia Ten.). Forest Prod. J. 56(4): 56-60.
  • 10. GULER, C., OZEN, R., 2004: Some properties of particleboards made from cottonstalks (Gossypium hirsitum L.). Holz Roh Werkst 62: 40-43.
  • 11. GUMOWSKA A., WRONKA A., BORYSIUK P., ROBLES E., SALA C.,KOWALUK G., 2018: Production of layered wood composites with a time-savinglayer-by-layer addition BioResources 13(4), 8089-8099.
  • 12. GUNTEKIN, E., UNER, B., SAHIN, H.T., KARAKUS, B., 2008: Pepper stalks(Capsicum annuum) as raw material for particleboard manufacturing. J. Applied Sci.8(12): 2333-2336.
  • 13. GÜRÜLER, H., BALLI, S., YENIOCAK, M., GÖKTAŞ, O., 2015: Estimation theproperties of particleboards manufactured from vine prunings stalks using artificialneural networks. Mugla journal of science and technology, Vol. 1, No. 1: 24-33.
  • 14. ILIEV, B., MIHAILOVA, J., DIMESKI, J., 2005: Analysis of significant properties ofparticle boards produced of various materials. Proceedings of 7-th internat. conferenceon wood technology, construction industry and wood protection. Zagreb: 9-13.
  • 15. ILIEV, B., MIHAILOVA, J., DIMESKI, J., 2005: Analysis of significant properties ofparticle boards produced of various materials. Proceedings of 7-th intern. conferenceon wood technology, construction industry and wood protection. Zagreb: 9-13
  • 16. KORD, B., ROOHANI, M., KORD, B., 2015: Characterization and utilization of reedstem as a lignocelulosic resource for particleboard production. Maderas. Ciencia ytecnología 17(3): 517-524
  • 17. KOWALUK, G., FUCZEK, D., BEER, P., GRZEŚKIEWICZ, M., 2011: Influence ofthe raw materials and production parameters on chosen standard properties forfurniture panels of biocomposites from fibrous chips. BioResources 6(3), 3004-3018.
  • 18. KWON, J.H., AYRILMIS, N., HAN, T.H., 2013: Enhancement of flexural propertiesand dimensional stability of rice husk particleboard using wood strands in face layers.Composites: Part B 44: 728-732.
  • 19. MIHAILOVA, J., ILIEV, B., TODOROV, T., GRIGOROV, R., 2008: Mechanicalproperties of threelayered boards with different kind of lignocellulosic agricultural residues in intermediate layer. Proceedings of scientific-technical conference„Innovation in woodworking industry and engineering design”, Jundola: 93-98.
  • 20. MIHAILOVA, J., ILIEV, B., TODOROV, T., GRIGOROV, R., 2008: Mechanicalproperties of threelayered boards with different kind of lignocellulosic agriculturalresidues in intermediate layer. Proceedings of scientific-technical conference„Innovation in woodworking industry and engineering design”, Jundola: 93-98.
  • 21. MIHAILOVA, J., TODOROV, T., GRIGOROV, R., 2006: Utilization of cotton stemsas raw material for intermediate layer of particleboards. Proceedings of the Conferenceco-organizated by COST Action E44-E49 „Wood resources and panel properties”,Valencia: 37-44.
  • 22. MIHAJLOVA, J., TODOROV, T., GRIGOROV, R., ILIEV, B., PESEVSKI, M.,2007: Quality indicator of grapevine rods as raw material for production ofparticleboards. Proceedings of international symposium „Sustainable forestryproblemsand challenges, perspectives and challenges in wood technology”, Ohrid:449-455.
  • 23. TODOROV, T., MIHAILOVA, J., GRIGOROV, R., 2007: Utilization of raspberrystalks as a raw material for three-layered particleboards. Proceedings of intern.symposium „Sustainable forestry-problems and challenges, perspectives andchallenges in wood technology”, Ohrid: 518-521.
  • 24. YANG, H.S., KIM, D.J., KIM, H.J., 2003: Rice straw–wood particle composite forsound absorbing wooden construction materials. Bioresource Technology 86 (2003):117-121.
  • 25. YENIOCAK, M., GÖKTAŞ, O., ZIYA ERDIL, Y., ÖZEN, E., 2014: Investigating theuse of vine prungs stalks (Vitis vinifera L. cv. Sultani) as raw material forparticleboard manufacturing. Wood Research, 59 (1): 167-176.
  • 26. YOSSIFOV, N., DIMESKI, J., MIHAILOVA, J., ILIEV, B., 2001: Grapevine rodspotentialsubstitute for wood raw material in production of boards. Proceedings ofthird balkan scientific conference „Study, conservation and utilisation of forestresources”. Volume IV, Sofia: 139-147.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7dec015c-3b37-4502-93b8-2d79465f828b
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