The improvement in physical and static bending properties of woven oil palm plywood

The physical and static bending properties of woven oil palm plywood pre-treated with low molecular weight of phenol formaldehyde (LMWPF) were investigated using MS standard 1787: Part 6 and 10. The oil palm veneers were cut into three different split widths of 15, 20 and 25 mm; and manually woven i...

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Main Authors: Hamid, Norul Hisham, Yazid, Mohd Fitri, David Hale, Micheal
Format: Article
Published: Science and Engineering Publishing Company 2014
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author Hamid, Norul Hisham
Yazid, Mohd Fitri
David Hale, Micheal
author_facet Hamid, Norul Hisham
Yazid, Mohd Fitri
David Hale, Micheal
author_sort Hamid, Norul Hisham
collection UPM
description The physical and static bending properties of woven oil palm plywood pre-treated with low molecular weight of phenol formaldehyde (LMWPF) were investigated using MS standard 1787: Part 6 and 10. The oil palm veneers were cut into three different split widths of 15, 20 and 25 mm; and manually woven into veneer sized of 40 cm2. The plywoods were fabricated into three different matrix layers of Type 1 (all three layer contained woven veneers), Type 2 (only core layer contained woven veneer) and Type 3 (face and back layers contained woven veneer). All plywood were made using a urea formaldehyde resin (UF) with spread rate of 200g/m2, pre-pressed for two minutes and hot pressed at 130 °C for 12 minutes. The results revealed that Type 1 plywood gave the lowest thickness swelling, while Type 3 gave the highest static bending properties.
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spelling upm.eprints-357252016-02-04T02:31:25Z http://psasir.upm.edu.my/id/eprint/35725/ The improvement in physical and static bending properties of woven oil palm plywood Hamid, Norul Hisham Yazid, Mohd Fitri David Hale, Micheal The physical and static bending properties of woven oil palm plywood pre-treated with low molecular weight of phenol formaldehyde (LMWPF) were investigated using MS standard 1787: Part 6 and 10. The oil palm veneers were cut into three different split widths of 15, 20 and 25 mm; and manually woven into veneer sized of 40 cm2. The plywoods were fabricated into three different matrix layers of Type 1 (all three layer contained woven veneers), Type 2 (only core layer contained woven veneer) and Type 3 (face and back layers contained woven veneer). All plywood were made using a urea formaldehyde resin (UF) with spread rate of 200g/m2, pre-pressed for two minutes and hot pressed at 130 °C for 12 minutes. The results revealed that Type 1 plywood gave the lowest thickness swelling, while Type 3 gave the highest static bending properties. Science and Engineering Publishing Company 2014-09 Article PeerReviewed Hamid, Norul Hisham and Yazid, Mohd Fitri and David Hale, Micheal (2014) The improvement in physical and static bending properties of woven oil palm plywood. International Journal of Material Science, 4 (3). pp. 113-117. ISSN 2226-4531; ESSN: 2226-4523 http://dpi-journals.com/index.php/IJMSCI/article/view/941 10.14355/ijmsci.2014.0403.04
spellingShingle Hamid, Norul Hisham
Yazid, Mohd Fitri
David Hale, Micheal
The improvement in physical and static bending properties of woven oil palm plywood
title The improvement in physical and static bending properties of woven oil palm plywood
title_full The improvement in physical and static bending properties of woven oil palm plywood
title_fullStr The improvement in physical and static bending properties of woven oil palm plywood
title_full_unstemmed The improvement in physical and static bending properties of woven oil palm plywood
title_short The improvement in physical and static bending properties of woven oil palm plywood
title_sort improvement in physical and static bending properties of woven oil palm plywood
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