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Substitution of phenol in phenol-formaldehyde (PF) resins by wood tar for plywood adhesives

机译:用木焦油代替酚醛(PF)树脂中的苯酚作胶合板粘合剂

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Wood tars from Acacia confusa Men. and Cryptomeria japonica D. Don. were produced by reduced pressure distillation at 76 mm Hg and 50℃ from the bottom layer of crude wood vinegars that had set for over 6 months. The feasibility of using water-soluble, resole-type, wood tar phenol-formaldehyde resins (WT-PF) was investigated. The resins were prepared from phenol (P) and wood tars (WTs) at weight ratios of 100:0, 80:20, 60:40 and 40:60 and F/P molar ratios of 1.5,1.8 and 2.0 as plywood adhesives. The results demonstrated that WT-PF resins had a higher viscosity, shorter gel times, a higher polydispersity, a lower curing temperature and less heat of curing than conventional PF resins under the same conditions. The shear strength of plywood bonded with WT-PF resins was slightly lower than that of conventional PF resin. However, the WT-PF resin still met the CNS 1349 requirement for the dry test, and phenol substitution levels could be up to 60%, but only 20% for type I and type Ⅱ plywood. The addition of A. confusa bark powder fillers could significantly improve the bonding strength of WT-PF resins, especially for the warm water soaking and soaking in boiling water tests. The required amounts of fillers added were up to 5% for A. confusa WT-PF resins and up to 3% for C. japonica resins.
机译:阿拉伯树胶的木焦油。和日本柳杉D.通过在76毫米汞柱和50℃下减压蒸馏,从已凝固6个月以上的粗木醋的底层中生产。研究了使用水溶性甲阶酚醛型木焦油酚醛树脂(WT-PF)的可行性。该树脂是由苯酚(P)和木焦油(WTs)以100:0、80:20、60:40和40:60的重量比以及F / P摩尔比为1.5、1.8和2.0的胶合板粘合剂制备的。结果表明,在相同条件下,WT-PF树脂比常规PF树脂具有更高的粘度,更短的凝胶时间,更高的多分散性,更低的固化温度和更少的固化热。与WT-PF树脂粘合的胶合板的剪切强度略低于常规PF树脂。然而,WT-PF树脂仍然满足CNS 1349的干法测试要求,酚取代水平可能高达60%,但I型和Ⅱ型胶合板仅为20%。添加孔雀草树皮粉末填料可以显着提高WT-PF树脂的粘结强度,特别是对于温水浸泡和沸水测试中的浸泡而言。孔雀草WT-PF树脂的填充剂添加量要求最高为5%,而日本粳稻树脂的填充剂添加量最高为3%。

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