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A Study on the Bonding Strength, Reactivity and Thermal Properties of Epoxy Resin Mixed with ESBO  

Choi, Jin Lim (Dept. of Forest Science, Konkuk University)
Park, Heon (Dept. of Forest Science, Konkuk University)
Publication Information
Journal of the Korean Wood Science and Technology / v.35, no.3, 2007 , pp. 36-44 More about this Journal
Abstract
The purpose of this study was to investigate thermal stability, reactivity, and bonding strength of existing epoxy resin mixed with the epoxidized soybean oil (ESBO) in order to use soybean oil economically. In the dry shear test, the marked strengths showed $30.5kgf/cm^2$ at the ratio of ESBO to epoxy resin 9 : 1 and $6.2kgf/cm^2$ at the ratio 8 : 2. The bonding strengths of the others, except mixing ratios 2 : 8 and 1 : 9, exceeded the requirement of Korean plywood standard of $7.0kgf/cm^2$. In the wet shear test, the result was $5.8kgf/cm^2$ at the ratio 9 : 1. There were no thickness swelling and moisture absorption in the water resistance of the film. The value of activation energy, Tg (${\Delta}E$), by DSC analysis showed between $110^{\circ}C$ and $120^{\circ}C$ through all ratios. Epoxy in the epoxy resin fully reacted with the hardener (TETA), but it is difficult to decide that epoxys in the ESBO were reacted directly with the hardener from FT-IR analysis. As the mixing ratio of ESBO increased, the thermal stabilities dropped from TGA analysis. From the comprehensive view on the results of above experiments, it could be confirmed through experiments that the ESBO in the mixed adhesive of epoxy resin/ESBO played a role as an extending agent level of epoxy adhesive, and we were able to know that in order to utilize ESBO as an adhesive, a study should be performed on the condition of hardening, inducible of the hardening reaction.
Keywords
plywood; bonding strength; ESBO; FT-IR; epoxy resin; TGA; DSC;
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1 Brignoli, C. A., Kinsella, J. E., and Weihrauch, J. L. 1976. Comprehensive evaluation of fatty acids in foods. V. Unhydrogenated fats and oils. Journal of the American Dietetic Association 68(3): 224-229   PUBMED
2 Frischinger, I. and Dirlikov, S. 1993. Two-phase epoxy thermosets that contain epoxidized triglyceride oils. V. Phase separation. Polymeric Materials Science and Engineering 70:1-3
3 Nevin, C and Moser, B. 1963. Vinyl oil monomers. I. Vicinal methacryloxy-hydroxy soy oils. Journal of Applied Polymer Science 7: 1853-1866   DOI
4 Pryde, E. H. 1990. Handbook of Soy Oil Processing and Utilization. American Oil Chemists' Society: Champaign, IL
5 Xiao, G. Z. and Shanahan, M E. R. 1997. Water Absorption and Desorption in an Epoxy Resin with Degradation. Journal of Polymer Science part B: polymer physics 35(16): 2659-2670   DOI   ScienceOn
6 조정식. 1999. 실내 공기질 향상 및 오염 대책 연구. 한국건설기술연수원 연구보고서
7 Gunstone, F. D. 1993. The study of natural epoxy oils and epoxidized vegetable oils by carbon-13 nuclear magnetic resonance spectroscopy. Journal of the American Oil Chemists' Society 70(11): 1139-1144   DOI
8 Maggana, C. and Pissis, P. 1999. Water Sorption and Diffusion Studies in an Epoxy System. Journal of Polymer Science part B: polymer physics 37: 1165   DOI   ScienceOn
9 Jiang, Z., Chandrashekhara, K., Virgil, F. and Shubhender, K. 2004. Curing and Mechanical Characterization of a Soy-Based Epoxy Resin System. Journal of Applied Polymer Science 91: 3513-3518   DOI   ScienceOn
10 Bauer, R. S. 1979. 'Epoxy Resin Chemistry', Advanced in Chemistry Series. American Chemical Society 114: 1
11 박종영, 박상범, 박병대, 문성필. 2005. 실내공기환경과 목질제품. 국립산림과학원. pp. 44-50
12 Liu Z. S., Erhan, S. Z., and Calvert, P. D. 2004. Solid freeform fabrication of epoxidized soybean oil/epoxy composites with Di-, Tri-, and polyethylene amine curing agents. Journal of Applied Polymer Science 93(1): 356-363   DOI   ScienceOn
13 한국표준협회. 1997. 보통합판. 한국산업규격. KS F3101
14 문명룡, 채규훈. 1991. IR 스펙트럼 분석에 의한 에폭시의 절연특성. 군산대학교 수산과학연구소 연구논문집. 2: 375-386