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Effects of weathering on mechanical properties and surface roughness of Endospermum malaccense wood modified with propionic anhydride

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study evaluated some properties of sesenduk (Endospermum malaccense) wood treated with propionic anhydride and exposed to outdoor conditions for up to one year. Defect-free samples of sesenduk were extracted with a 3:1:1 (v/v) mixture of toluene, ethanol and acetone for 3 hours at a temperature of 100°C. The samples were then modified at the same temperature for another 3 hours using propionic anhydride and 10% sodium formate as catalyst. Modulus of elasticity (MOE), modulus of rupture (MOR) and parallel-to-grain compression strength of the samples exposed to weathering were tested. Chemical treatment reduced the MOE but slightly increased the MOR and parallel-to-grain compression strength compared with untreated samples. However, treated samples retained higher strength properties than untreated ones. The modulus of elasticity, modulus of rupture and parallel-to-grain compression strength of treated samples at radial orientation were respectively 20%, 31% and 62% higher than those of untreated samples after one year’s outdoor exposure. Weathering adversely influenced the surface quality of the specimens for all exposure times.
Rocznik
Strony
101--110
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
  • Forest Products Division, Forest Research Institute Malaysia, Selangor, Malaysia
autor
  • Institute of Tropical Forestry and Forest Products, Universiti Putra Malaysia, Selangor, Malaysia
  • Forest Products Division, Forest Research Institute Malaysia, Selangor, Malaysia
  • Forest Products Division, Forest Research Institute Malaysia, Selangor, Malaysia
  • Forest Products Division, Forest Research Institute Malaysia, Selangor, Malaysia
Bibliografia
  • Anwar U.M.K., Hiziroglu S., Hamdan H., Latif M.A. [2011]: Effect of outdoor exposure on some properties of resin-treated plybamboo. Industrial Crops and Products 33 [1]: 140-145
  • Behbood M., Saei A.M. [2015]: Effects of geographical directions and climatological parameters on natural weathering of fir wood. Construction and Building Materials 94: 684-690
  • Bhat I., Abdul Khalil H.P.S., Awang K.B., Bakare I.O., Issam A.M. [2010]: Effect of weathering on physical, mechanical and morphological properties of chemically modified wood materials. Materials and Design 31: 4363-4368
  • Candelier K., Thevenon M.F., Petrissans A., Dumarcay S., Gerardin P., Petrissans M. [2016]: Control of wood thermal treatment and its effects on decay resistance: a review. Annals of Forest Science 73 [3]: 571-583
  • Hiziroglu S., Anwar U.M.K., Hamdan H., Paridah, M.T. [2008]: Evaluation of surface quality of some Malaysian species as function of outdoor exposure. Journal of Materials Processing Technology 199 [1-3]: 156-162
  • Homkhiew C., Ratanawilai T., Thongruang W. [2014]: Effects of natural weathering on the properties of recycled polypropylene composites reinforced with rubberwood flour. Industrial Crops and Products 56: 52-59
  • Imamura Y. [1993]: Morphological changes in acetylated wood exposed to weathering. Wood Research: Bulletin of the Wood Research Institute Kyoto University 79: 54-61
  • Jackson W.F. [1965]: The durability of Malayan timbers. In: Malaysian Forest Service Trade Leaflet No.28. The Malaysian Timber Industry Board and Forest Research Institute Malaysia, Kuala Lumpur
  • Jankowska A., Kozakiewicz P. [2016]: Evaluation of wood resistance to artificial weathering factors using compressive properties. Drvna Industrija 67: 3-8
  • Kilic A., Niemz P. [2012]: Extractives in some tropical woods. European Journal of Wood and Wood Products 70: 79-83
  • Militz H., Beckers E.P.J., Homan W.J. [1997]: Modification of solid wood: research and practical potential. Doc. No. WP 40098, IRG International Research Group on Wood Preservation, Stockholm
  • Mohammad-Fitri K., Zaidon A., Lee S.H., Nabil-Fikri L., Edi-Suhaimi B. [2017]: Effects of accelerated and outdoor ageing on leachability and properties of compreg-laminated sesenduk wood. Journal of Tropical Forest Science 29 [2]: 198-207
  • Papadopoulos A.N. [2006]: Chemical modification of pine wood with propionic anhydride: Effect of decay resistance and sorption of water vapour. BioResources 1 [1]: 67-74
  • Rowell R.M., Winandy J.E. [2005]: Chemistry of wood strength. In: Handbook of wood chemistry and wood composites, CRC Press, London, p. 303-347
  • Sanberg D. [1999]: Weathering of radial and tangential wood surfaces of pine and spruce. Holzforschung 53: 355-364
  • Sander C., Beckers E.P.J., Militz H., van Veenendaal W. [2003]: Analysis of acetylated wood by electron microscopy. Wood Science and Technology 37: 39-46
  • Yildiz S., Tomak E.D., Yildiz U.C., Ustaomer D. [2013]: Effect of artificial weathering on the properties of heat treated wood. Polymer Degradation and Stability 98: 1419-1427
  • Zhu R., Zhang Y., Yu W. [2015]: Outdoor exposure tests of bamboo-fiber reinforced composite: evaluation of the physical and mechanical properties after two years. European Journal of Wood and Wood Products 73 [2]: 275-278
  • List of standards
  • BS 373:1957 Methods of testing small clear specimens of timber
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-554949eb-6445-482c-84bf-cad9b28eadec
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