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Bonding properties and resin exudation characteristics of pitch pineopen access

Authors
Roh, J.Kim, Y.G.
Issue Date
2018
Publisher
Korean Society of Wood Science Technology
Keywords
Bonding properties; Knot; Pitch pine; Resin exudation; Resorcinol adhesive
Citation
Journal of the Korean Wood Science and Technology, v.46, no.3, pp 213 - 220
Pages
8
Indexed
SCOPUS
KCI
Journal Title
Journal of the Korean Wood Science and Technology
Volume
46
Number
3
Start Page
213
End Page
220
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/12971
DOI
10.5658/WOOD.2018.46.3.213
ISSN
1017-0715
Abstract
In order to use Pitch pine (Pinus rigida Miller) as the material of the structural glued laminated timber, the effect of the amount of resin exudation due to storage time after the planning and the knot of the lamina were evaluated on the bonding properties of the glued board with resorcinol resin. For Pitch pine that was dried at high temperature (120~95 ?) and low temperature (65~50 ?), the flat sawn(tangential section) showed higher amount of resin exudation than the quarter sawn(radial section). And the low temperature drying wood showed higher resin exudation than the high temperature drying wood. The low and high temperature drying wood showed the highest amount of resin exudation on the 3rd day and 7th day, respectively and they were gradually decreased. However, there were no significant differences from 15 to 90 days. Adhesion performances were low until 2~3 days with high exudation of resin, but there were no significant differences after 15 days. Both high temperature and low temperature drying woods satisfied the Korean standard regardless of the storage time. The adhesive strengths of the laminating parts including knots were higher than those of KS criteria, but the wood failures were not satisfied the KS standard. Adhesive performances according to the laminating combinations (quarter sawn + quarter sawn, flat sawn + flat sawn, quarter sawn + flat sawn) were better than those of KS criteria in all laminating combinations in both high temperature and low temperature drying woods. ? 2018 Korean Society of Wood Science Technology. All rights reserved.
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건설환경공과대학 (인테리어재료공학과)
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