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http://dx.doi.org/10.5658/WOOD.2020.48.5.696

Mechanical Performances of Boards Made from Carbonized Rice Husk and Sawdust: The Effect of Resin and Sawdust Addition Ratio  

HWANG, Jung-Woo (Department of Wood Science & Technology, Jeonbuk National University)
OH, Seung-Won (Department of Wood Science & Technology, Jeonbuk National University)
Publication Information
Journal of the Korean Wood Science and Technology / v.48, no.5, 2020 , pp. 696-709 More about this Journal
Abstract
A board was manufactured for each resin and sawdust addition using the chaff made by carbonizing the chaff charcoal, an agricultural by-product that emerge during the rice pounding process, and sawdust. And effects of the additions of resin and sawdust on coefficients of dynamic and static modulus of elasticity, modulus of rupture, as well as the relationship between the dynamic modulus of elasticity, statis modulus of elasticity, and modulus of rupture were investigated. As phenol resin addition of chaff charcoal-sawdust compound board increases to 10~25%, the bending performance has increased. This suggests that resin addition largely effects the bending performance. Although the bending performance was gradually increased with the increase in sawdust addition, since the coefficients of determination (R2) between the sawdust addition with the coefficients of dynamic, static modulus of elasticity, and modulus of rupture were 0.4012, 0.0809, and 0.1971, respectively. Thus, it showed a relatively lower correlation, and the effect of sawdust on bending performance was small. Since a high correlation was confirmed between dynamic and static modulus of elasticity, and modulus of rupture of chaff charcoal-sawdust compound board, it was confirmed that prediction of static modulus of elasticity and modulus of rupture can be made in a nondestructive way from the dynamic modulus of elasticity.
Keywords
carbonized rice husk; sawdust; MOR; dMOE; sMOE;
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Times Cited By KSCI : 11  (Citation Analysis)
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