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Evaluation of Shear Bond Strength and Adhesive Bond Durability of Mixed Species Structural Glued Laminated Timber  

Shim, Sangro (Forest Products Engineering, Korea Forest Research Institute)
Yeo, Hwanmyeong (Forest Products Engineering, Korea Forest Research Institute)
Shim, Kugbo (Forest Products Engineering, Korea Forest Research Institute)
Publication Information
Journal of the Korean Wood Science and Technology / v.33, no.1, 2005 , pp. 87-96 More about this Journal
Abstract
This study was carried out to evaluate the shear bond strength and adhesive bond durability of structural glued laminated timber (glulam) manufactured with mixed species lumber of Korean red pine, Korean pine and Japanese larch, using resorcinol adhesive and water-based polymeric-isocyanate adhesive (WPI). Each board used as a glulam lamina was graded by visual inspection. The visual lumber grade of the all species was very low due to the large size and number of knots and the steep slope of grain. In view of the results, appropriate pruning, sawing and drying processes might be needed to produce high grade lamina lumber with small knot size and drying defect free. Shear bond strength of every tested glulam specimen ranged between 7.9 and $9.9N/mm^2$, and much higher than the Korean Standard (KS) for glulam shear bond strength, $7.1N/mm^2$. There was not much shear bond strength difference between wood/resorcinol and wood/WPI. The resorcinol adhesive bond durability exceeded KS requirements. However, delamination on the end-grain surfaces of WPI glulam submerged in both room temperature and boiling water severely occurred, and its durability did not meet KS requirements. Further investigations may be required, and special care should be taken, to ensure long service life of WPI glulam used for exterior application. Results of this study are expected to be useful for improvement of mechanical properties and structural performance of mixed species glulam.
Keywords
Korean red pine; Korean pine; Japanese larch; shear bond strength; adhesive bond durability;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
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