Mechanical Properties of <i>Terminalia catappa</i> from Ghana
- 1 Interior Design and Technology, Takoradi Technical University, Takoradi, Western Region, Ghana
Abstract
Ghana is rich in forest resources, of whichTerminalia catappa, a wood species of common occurrence is one. Even though sometimes it is used for decorative purposes, however, it grows in the wild. It grows in almost all the regions of the country and does well in the tropics. The parts of the tree such as the leaves, fruits and seeds have been known to be very useful for medicinal and other uses. Some work on the strength properties of the leaves and other parts has also been done, however, strength properties of the wood are yet to be explored. In this study, its mechanical properties such as bending strength, compression parallel to the grain, and shear parallel to the grain properties were determined. The British (BS 373, 1957) and American Society of Testing Materials’ specifications (ASTM D143, 1983) using testing methods for small, clear specimens of wood were used in determining the properties. The results showed that at 18% moisture content the wood has a density of 520 kg/m 3 with a mean modulus of rupture of 86.04 Mpa, compressive strength parallel to the grain of 42.02 Mpa, modulus of elasticity of 10,500 Mpa, and shear strength parallel to the grain of 16.42 N/mm 2 . These strength properties are comparable to that of Strombosia glaucescens . Therefore, T. catappa can be used in applications where this species is used.
- Hansom, O.P. (1983) Promotion of Commercially Less Accepted Species. UNIDO/FAO Consultation on Wood and Wood Products Industry, Helsinki, 19-23 September, 49 p.
- Oduro, I.N., Larbie, C., Amoako, T.N.E. and Antwi-Boasiako A.F. (2009) Proximate Composition and Basic Phytochemical Assessment of Two Common Varieties of Terminalia catappa (Indian Almond). Journal of Science and Technology, 29, 1-6. https://doi.org/10.4314/just.v29i2.46217
- Arbounier, M. (2002) Trees, Shrubs and Lianas of West Africa Dry Zones. Margraf Publishers, Weikersheim, 573 p.
- Thomson, L.A.J. and Evans, B. (2006) Terminalia catappa (Tropical Almond), ver. 2.2. In: Elevitch, C.R., Ed., Species Profiles for Pacific Island Agroforestry, Permanent Agriculture Resources (PAR), Hōlualoa, 1-20.
- Untwal, L.S. and Kondawar, M.S. (2006) Use of Terminalia catappa Fruit Extract as an Indicator in Acid-Base Titrations. Indian Journal of Pharmaceutical Sciences, 68, 399-401. https://doi.org/10.4103/0250-474X.26662
- Hayward, D. (1990) The Phenology and Economic Potential of Terminalia catappa in South Central Ghana. Plant Ecology, 90, 125-131. https://doi.org/10.1007/BF00033022
- Lin, C.C., Hsu, Y.F. and Lin, T.C., (1999) Effects of Punicalagin and Punicalin on Carragenan-Induced Inflammation in Rats. The American Journal of Chinese Medicine, 27, 371-376. https://doi.org/10.1142/S0192415X99000422
- Tan, G.T., Pezzuto, J.M., Kinghorn, A.D. and Hughes, S.H., (1999) Evaluation of Natural Products as Inhibitors of Human Immunodeficiency Virus Type 1 (HIV-1) Reverse Transcriptase. Journal of Natural Products, 54, 143-154. https://doi.org/10.1021/np50073a012
- Nagappa, A.N., Thakurdesai, P.A., Rao, V. and Singh, J. (2003) Antidiabetic Activity of Terminalia catappa Linn Fruits. Journal of Ethnopharmacology, 88, 45-50. https://doi.org/10.1016/S0378-8741(03)00208-3
- USDA Forest Service (1999) Wood Technical Fact Sheet. Forest Products Laboratory One Gifford Pinchot Drive Madison, WI 53705-2398 (608) 231-9200, 105 p.
- Eddowes, P.J. (1980) Technical Aspects of Marketing Unfamiliar Species. 11th Commonwealth for Conference, Trinidad and Tobago.
- Blackham, G., Núnez del Prado, I., Parker, J., and Tavares de Bastos, C. (2020) Lesser-Known & Lesser-Used Timber Species Utilising Ghana’s Sustainable Timber Resources. BVRio Responsible Timber Exchange.
- British Standard BS 5268-2-2002. Structural Use of Timber Part 2: Code of Practice for Permissible Stress Design, Materials and Workmanship. BSI 389 Chiswick High Road London W4 4AL ISBN 0 580 33314 0.