Fatigue strength and design stress of oil palm wood for furniture application.
Oil palm wood (OPW) and oil palm empty fruit bunches based particleboard (OPEFBP) furniture components were tested on edge in order to determine their resistance to fatigue. Tests were carried out at selected stress levels that corresponded to specific percentages of the material's ultimate str...
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Springer Berlin / Heidelberg
2011
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my.upm.eprints.239252015-10-30T07:05:56Z http://psasir.upm.edu.my/id/eprint/23925/ Fatigue strength and design stress of oil palm wood for furniture application. Ratnasingam, Jegatheswaran Ioras, F. Oil palm wood (OPW) and oil palm empty fruit bunches based particleboard (OPEFBP) furniture components were tested on edge in order to determine their resistance to fatigue. Tests were carried out at selected stress levels that corresponded to specific percentages of the material's ultimate strength (modulus of rupture - MOR). Generally, the materials fatigue life decreased as the levels of stress increased, and the allowable design stresses for the OPW and OPEFBP furniture components could be set at 40% of their respective MOR. The study also showed that OPW does not perform as well as solid Rubberwood in cyclic loading, but the OPEFBP showed similar fatigue performance to the conventional Rubberwood-based particleboard. Springer Berlin / Heidelberg 2011-08 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/23925/1/Fatigue%20strength%20and%20design%20stress%20of%20oil%20palm%20wood%20for%20furniture%20application.pdf Ratnasingam, Jegatheswaran and Ioras, F. (2011) Fatigue strength and design stress of oil palm wood for furniture application. European Journal of Wood and Wood Products, 69 (3). pp. 507-509. ISSN 0018-3768 http://link.springer.com 10.1007/s00107-010-0476-0 English |
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Oil palm wood (OPW) and oil palm empty fruit bunches based particleboard (OPEFBP) furniture components were tested on edge in order to determine their resistance to fatigue. Tests were carried out at selected stress levels that corresponded to specific percentages of the material's ultimate strength (modulus of rupture - MOR). Generally, the materials fatigue life decreased as the levels of stress increased, and the allowable design stresses for the OPW and OPEFBP furniture components could be set at 40% of their respective MOR. The study also showed that OPW does not perform as well as solid Rubberwood in cyclic loading, but the OPEFBP showed similar fatigue performance to the conventional Rubberwood-based particleboard. |
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Article |
author |
Ratnasingam, Jegatheswaran Ioras, F. |
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Ratnasingam, Jegatheswaran Ioras, F. Fatigue strength and design stress of oil palm wood for furniture application. |
author_facet |
Ratnasingam, Jegatheswaran Ioras, F. |
author_sort |
Ratnasingam, Jegatheswaran |
title |
Fatigue strength and design stress of oil palm wood for furniture application. |
title_short |
Fatigue strength and design stress of oil palm wood for furniture application. |
title_full |
Fatigue strength and design stress of oil palm wood for furniture application. |
title_fullStr |
Fatigue strength and design stress of oil palm wood for furniture application. |
title_full_unstemmed |
Fatigue strength and design stress of oil palm wood for furniture application. |
title_sort |
fatigue strength and design stress of oil palm wood for furniture application. |
publisher |
Springer Berlin / Heidelberg |
publishDate |
2011 |
url |
http://psasir.upm.edu.my/id/eprint/23925/1/Fatigue%20strength%20and%20design%20stress%20of%20oil%20palm%20wood%20for%20furniture%20application.pdf http://psasir.upm.edu.my/id/eprint/23925/ http://link.springer.com |
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