Physical Performance of Bamboo Strips-Oil Palm Trunk Veneers Composite Lumber at Different Layer Orientations and Hot Pressing Times

Author:

Wan Jaafar Wan Nor Raihan1,Bahari Shahril Anuar2

Affiliation:

1. Universiti Teknologi MARA

2. Universiti Teknologi MARA (UiTM)

Abstract

In this study, composite lumber from a combination of bamboo strips and oil palm trunk veneers was produced and physically tested. The bamboo strips and oil palm trunk veneers were laid-up together alternately with two different types of layer orientation, such as parallel and cross orientations to each other. The composite lumber was pressed using hydraulic hot pressing machine at two different pressing times, such as 12 and 15 minutes. Phenol formaldehyde (PF) adhesive was used in the lamination process. Physical performance tests such as cold water delamination (CWD), hot water delamination (HWD), flexural and compression were conducted based on Japanese Agricultural Standard for LVL JAS: SE-10 [1]. Results showed that longer pressing time has increased the physical performance, except for flexural and compression performance of parallel orientation composite lumber. Cross orientation has increased the bonding strength behaviour between bamboo strips and oil palm trunk veneers, thus influenced the low delamination percentage and good modulus of elasticity value of composite lumber. Generally, this study has increased the understanding on physical performance of bamboo strips-oil palm trunk veneers composite lumber at different layer orientations and hot pressing times.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference5 articles.

1. Anonymous. Japanese Agricultural Standard (JAS) for Structural Laminated Veneer Lumber Japan, Ministry of Agriculture, Forestry and Fisheries. (1993).

2. Kamarulzaman Nordin, Mohd Ariff Jamaludin, Mansur Ahmad, Hashim W. Samsi, Abdul Hamid Salleh and Zaihan Jalaludin. Minimizing the Environmental Burden of Oil Palm Trunk Residues Through the Development of Laminated Veneer Lumber Products. Management of Environmental Quality: An International Journal Vol. 15 No. 5, 2004. Pp. 484-490 Emerald Group Publishing Limited. (2004).

3. Razak Wahab, Hashim W. Samsi, Aminuddin Mohamad, Othman Sulaiman and Rafidah Salim. Properties of Laminated Veneer Lumbers from Oil Palm Trunks. Journal of Plant Sciences, 3 (3): 255-259. (2008).

4. Abdul Hamid, S., H.P.S. Abdul Khalil, A. Khairul, W. A. Wan Tarmezi and M.S. Shakri. Recovery and Physical Properties of Oil Palm Veneers and its Effects on the Density of LOPVL Boards. International Conference on Environmental Research and Technology (ICERT 2008). Pp. 163 – 166. (2008).

5. S. C. Lim and K. S. Gan. Characteristics and Utilization of Oil Palm Stem. Timber Technology Bulletin No. 35. Forest Institute of Malaysia. (2005).

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