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Dynamic Mechanical Analysis of Urea Formaldehyde Resin Modified by Ammonium Pentaborate as Wood Adhesive

机译:五硼酸铵改性木胶尿素甲醛树脂的动态力学分析

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Urea formaldehyde (UF) resins with varied molar ratio of formaldehyde (F) to urea (U), modified by ammonium pentaborate (APB) at different loading level, was analyzed by dynamic mechanical analysis (DMA) and evaluated via bonding properties of its glued plywood. The result indicated that a higher loading of APB made a slower gelling and improved the Delta E' (the difference of storage modulus) of UF resin with F/U molar ratio of 1.8. Hexamethylenetetramine, generated from the ammonium ion in APB and formaldehyde in UF resin and characterized by the covalent bond connections, was considered as the main reason to improve the rigidity of the cured UF resin system. The bond strength result confirmed the DMA analysis that the addition of APB improved bonding performance of UF resin with higher F/U molar ratio such as 1.8. A specific recommendation loading level of APB was made to modify UF resins, of which 6.0 to 8.0% APB should be used to modify UF resin with F/U molar ratio of 1.8, then 6% and 4% loading level of APB to UF resin with F/U molar ratio of 1.50 and 1.25, respectively. Finally, APB was n'ot suggested to modify UF resin at F/U molar ratio less than 1.20. (C) 2015 Society of Plastics Engineers
机译:通过动态力学分析(DMA)对甲醛(F)与尿素(U)摩尔比不同,经五硼酸铵(APB)改性的脲醛(UF)树脂进行动态力学分析(DMA)进行分析,并通过其胶合性能进行评估胶合板。结果表明,当F / U摩尔比为1.8时,较高的APB负载会使胶凝较慢,并改善UF树脂的Delta E'(储能模量之差)。由APB中的铵离子和UF树脂中的甲醛产生的六亚甲基四胺具有共价键连接特征,被认为是提高固化UF树脂体系刚性的主要原因。粘合强度结果证实了DMA分析,即添加APB可以改善F / U摩尔比较高(例如1.8)的UF树脂的粘合性能。确定了APB的特定推荐负载量以改性UF树脂,其中应使用6.0%至8.0%的APB来改性F / U摩尔比为1.8的UF树脂,然后将PB和UF树脂的负载量分别为6%和4% F / U摩尔比分别为1.50和1.25。最后,不建议APB以小于1.20的F / U摩尔比改性UF树脂。 (C)2015年塑料工程师学会

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