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Dependence of reaction kinetics and physical and mechanical properties on the reaction systems of acetylation II: physical and mechanical properties
Authors:Email author" target="_blank">Kazuya?MinatoEmail author  Ryosuke?Takazawa  Kenji?Ogura
Institution:(1) Graduate School of Agriculture, Kyoto Prefectural University, Sakyo-ku, Kyoto, 606-8522, Japan;(2) Faculty of Agriculture, Kyoto Prefectural University, Kyoto, 606-8522, Japan;(3) Graduate School of Agriculture, Kyoto Prefectural University, Kyoto, 606-8522, Japan;(4) Present address: Wood Research Institute, Kyoto University, Uji, 611-0011, Japan;(5) Present address: Sumitomo Forestry Co., Tsukuba Research Institute, Tsukuba, 300-2646, Japan
Abstract:Acetylation of wood was carried out in acetic anhydride only, acetic anhydride/xylene 1thinsp:thinsp1 (v/v), and acetic anhydride/pyridine 4thinsp:thinsp1 (v/v) solutions. The antishrink efficiency (ASE), hygroscopic properties, vibrational properties, and bending strength were compared among the three reaction solutions. The ASE was a simple function of weight gain (WG); the equilibrium moisture content at a given WG differed among the reaction solutions. Based on this fact and the results of repeated water soaking and oven-drying tests, it was found that the bulking effect was a major factor, and that decreased hygroscopicity contributes only slightly to the dimensional stabilization by acetylation. The difference in equilibrium moisture content among reaction solutions appears more significant in block samples than wood meal, probably due to the fiber-to-fiber bonds in the former. The tendencies for change in the specific Youngrsquos modulus and the loss tangent differed among reaction solutions, whereas in the static bending test the difference was not marked.Part of this report was represented at the 52nd Annual Meeting of the Japan Wood Research Society, Gifu, April 2002
Keywords:Acetylation  Dimensional stability  Moisture adsorption  Vibrational property  Mechanical strength
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