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Physical-Mechanical Properties of Glued Laminated Timber Made from Tropical Small-Diameter Logs Grown in Indonesia

  • Komariah, Rahma Nur (Forest Products Department, Faculty of Forestry, Bogor Agricultural University) ;
  • Hadi, Yusuf Sudo (Forest Products Department, Faculty of Forestry, Bogor Agricultural University) ;
  • Massijaya, Muh.Yusram (Forest Products Department, Faculty of Forestry, Bogor Agricultural University) ;
  • Suryana, Jajang (Forest Products Department, Faculty of Forestry, Bogor Agricultural University)
  • Received : 2014.08.12
  • Accepted : 2014.12.22
  • Published : 2015.03.25

Abstract

The aim of this study was to determine the physical and mechanical properties of glued laminated timber (glulam) manufactured from small-diameter logs of three wood species, Acacia mangium (mangium), Maesopsis eminii (manii), and Falcataria moluccana (sengon), with densities of 533, 392, and $271kg/m^3$, respectively. Glulam measuring 5 cm by 7 cm by 160 cm in thickness, width, and length, respectively, was made with three to five lamina, or layers, and isocyanate adhesive. The glulams contained either the same wood species for all layers or a combination of mangium face and back layers with a core layer of manii or sengon. Solid wood samples of the same size for all three species were included as a basis for comparison. Physical-mechanical properties and delamination tests of glulam referred to JAS 234:2003. The results showed that the properties of same species glulam did not differ from those of solid wood, with the exception of the shear strength of glulam being lower than that of solid wood. Wood species affected glulam properties, but three- and five-layer glulams were not different except for the modulus of elasticity. All glulams were resistant to delamination by immersion in both cold and boiling water. The glulams that successfully met the JAS standard were three- and five-layer mangium, five-layer manii, and five-layer mangium-manii glulams.

Keywords

References

  1. Bahtiar, E.T. 2008. Modulus elastisitas dan kekuatan tekan glulam [MOE and crushing strength of glulam]. Proceedings of the 11th National Seminar of Indonesian Wood Research Society. Palangkaraya University, Palangkaraya, Central Kalimantan (ID), p. (A17): 71-89
  2. Cheng, R.X., Gu, J.Y. 2010. Study of improvement of bonding properties of larch glued laminated timber. Pigment and Resin Technology, 39(3):170-173. https://doi.org/10.1108/03699421011040802
  3. Faherty, K.F., Williamson, T.G. 1999. Wood Engineering and Construction Handbook. McGraw-Hill Inc., New York, NY, USA.
  4. [JAS] Japanese Agricultural Standard. 2003. Glued laminated timber. JAS 234:2003. Ministry of Agriculture, Forestry, and Fisheries, Tokyo, Japan.
  5. Mandang, Y.I., Pandit, I.K.N. 1997. Pedoman Identifikasi Jenis Kayu di Lapangan [Guide of wood species in the field]. PROSEA Bogor and Center of Education and Training for Forestry Ministry Staff, Bogor, Indonesia.
  6. Massijaya, M.Y., Hadi, Y.S., Hermawan, D., Hadjib, N. 2011. Project Completion Report: Activity 2.1.4 Evaluation of the Appropriate Properties of Products Manufactured from Small Diameter Logs in Indonesia. Faculty of Forestry, Bogor Agricultural University.
  7. Ministry of Forestry. 2012. Directorate of Natural Forest Development. Directorate General Forest Products. Ministry of Forestry, Jakarta, Indonesia.
  8. Moody, R.C., Hernandez, R., Liu, J.Y. 1999. Glued structural timbers. In: Wood Handbook-Wood as an Engineering Material. USDA Forest Service, Forest Products Laboratory, Madison, WI, USA.
  9. Ruhendi, S., Koroh, D.S., Syamani, F.A., Yanti, H., Nurhaida, Saad, S., Sucipto, T. 2007. Analisis Perekatan Kayu [Wood Adhesion Analysis]. Faculty of Forestry, Bogor Agricultural University, Bogor, Indonesia.
  10. Sulistyawati, I., Nugoho, N., Surjokusumo, S., Hadi, Y.S. 2008. Kekakuan dan Kekuatan Lentur Maksimum Balok Glulam dan Utuh Kayu Akasia [Stiffness and MOR of mangium glulam beam and solid wood]. Journal Civil Engineering. Bandung Institute of Technology, 15(3): 113-119
  11. Surjokusumo, S., Nugroho, N., Priyono, J., Suroso, A. 2003. Buku Petunjuk Penggunaan Mesin Pemilah Kayu Panter Versi Panter MPK-5 [Manual Operation of Wood Grading Using Panter version Panter MPK-5]. Faculty of Forestry, Bogor Agricultural University, Bogor, Indonesia.
  12. Tsoumis, G. 1991. Science and Technology of Wood Structure, Properties, Utilization. Van Nostrand Reinhold, New York, NY, USA.
  13. Vick, C.B. 1999. Adhesive bonding of wood material. In: Wood Handbook: Wood as an Engineering Material. Forest Products Technology. USDA Forest Service, Forest Products Laboratory, Madison, WI, USA.

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