Impulse flashover characteristics of oil palm trunk (OPT) veneer plywood
Adhesives; Electric breakdown; Electric insulators; Flashover; Hardwoods; Lightning; Lightning protection; Plywood; Roofs; Veneers; Wood products; Contaminated surfaces; Electrical breakdown; Fibre orientation; High voltage; Impulse flashover; Oil palm trunks; Surface flashover; Up-and-down method;...
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Institute of Electrical and Electronics Engineers Inc.
2023
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my.uniten.dspace-236422023-05-29T14:50:42Z Impulse flashover characteristics of oil palm trunk (OPT) veneer plywood Gomes A. Lim E.Y. Islam T. Parida M.T. Choo A.C.Y. Juliana A.H. Gomes C. Gomes A.E. Kadir M.Z.A.A. 56460772700 57204727092 57213772444 57204734647 45460971200 57193947939 57201335285 57212428180 25947297000 Adhesives; Electric breakdown; Electric insulators; Flashover; Hardwoods; Lightning; Lightning protection; Plywood; Roofs; Veneers; Wood products; Contaminated surfaces; Electrical breakdown; Fibre orientation; High voltage; Impulse flashover; Oil palm trunks; Surface flashover; Up-and-down method; Palm oil Oil palm is one of the largest crop industries in South East Asia, thus, it is of importance to use all parts of the Oil palm trees. Recently Oil Palm Trunks (OPT) have been used to make veneer, which can be processed to produce plywood. Even though OPT plywood doesn't have the same mechanical properties as timber, with proper treatment and adhesives during the processing of veneer to plywood, it can be made to compete with hardwood. OPT plywood has been used in various applications from wooden appliances to housing and roofing structures. These structures are at risk of surface flashovers through lightning and electrical breakdowns. However, no study has been conducted on the effects or characteristics of OPT plywood. In this paper, the effects of impulse surface flashover under different conditions on three-layered OPT plywood has been analyzed. Experiments were conducted to identify the characteristics of OPT under clean and dry, clean and wet, and contaminated surface conditions for both parallel and perpendicular fiber orientations. The 50% breakdown voltage was determined by the up and down method. Results identified the importance of the fibre orientation and the decrease in breakdown voltage under contaminants. � 2018 IEEE. Final 2023-05-29T06:50:41Z 2023-05-29T06:50:41Z 2018 Conference Paper 10.1109/ICLP.2018.8503332 2-s2.0-85056819981 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85056819981&doi=10.1109%2fICLP.2018.8503332&partnerID=40&md5=5b0d8f9c299564b1ce64534300f984f2 https://irepository.uniten.edu.my/handle/123456789/23642 8503332 All Open Access, Green Institute of Electrical and Electronics Engineers Inc. Scopus |
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Adhesives; Electric breakdown; Electric insulators; Flashover; Hardwoods; Lightning; Lightning protection; Plywood; Roofs; Veneers; Wood products; Contaminated surfaces; Electrical breakdown; Fibre orientation; High voltage; Impulse flashover; Oil palm trunks; Surface flashover; Up-and-down method; Palm oil |
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56460772700 Gomes A. Lim E.Y. Islam T. Parida M.T. Choo A.C.Y. Juliana A.H. Gomes C. Gomes A.E. Kadir M.Z.A.A. |
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Conference Paper |
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Gomes A. Lim E.Y. Islam T. Parida M.T. Choo A.C.Y. Juliana A.H. Gomes C. Gomes A.E. Kadir M.Z.A.A. |
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Gomes A. Lim E.Y. Islam T. Parida M.T. Choo A.C.Y. Juliana A.H. Gomes C. Gomes A.E. Kadir M.Z.A.A. Impulse flashover characteristics of oil palm trunk (OPT) veneer plywood |
author_sort |
Gomes A. |
title |
Impulse flashover characteristics of oil palm trunk (OPT) veneer plywood |
title_short |
Impulse flashover characteristics of oil palm trunk (OPT) veneer plywood |
title_full |
Impulse flashover characteristics of oil palm trunk (OPT) veneer plywood |
title_fullStr |
Impulse flashover characteristics of oil palm trunk (OPT) veneer plywood |
title_full_unstemmed |
Impulse flashover characteristics of oil palm trunk (OPT) veneer plywood |
title_sort |
impulse flashover characteristics of oil palm trunk (opt) veneer plywood |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2023 |
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1806425925070356480 |
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13.214268 |