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Utilization of Hydrophilic/Hydrophobic Hyperbranched Poly(amidoamine)s as Additives for Melamine Urea Formaldehyde Adhesives

机译:亲水/疏水性超支化聚(酰胺基胺)作为三聚氰胺尿素甲醛胶粘剂的添加剂

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Hyperbranched poly(amidoamine)s (PAMAMs), exhibiting various levels of hydrophilicity, were used as modifiers for melamine urea formaldehyde (MUF) adhesives. The modification was achieved either with or at expense of sodium hydroxide during the last pH adjustment. Their apparent co-condensability was expected from the measured gel times and further proved using Fourier transform infrared (FTIR) spectroscopy as well as C-13 nuclear magnetic resonance (C-13 NMR). Utilization of these structures as modifiers for MUF, which are frequently used in particleboards production, resulted in manifold advantages. Considering the economic point of view, their use is more practical and cheaper with respect to dendritic structures. Additionally, their application in finite quantities as final additives, either immediately before the final use or at the last stage of preparation, yielded considerable upgrading of the dry internal bond (IB) strength of the produced particleboards. The improvement was extended to the resistivity to hydrolytic degradation as revealed by the wet IB strength and thickness swelling. The results were explained on the light of an extensive investigation on the resins using thermomechanical analysis (TMA) while taking into account the relevant hydrophilicity and degree of branching of each hyperbranched structure. (C) 2014 Society of Plastics Engineers
机译:表现出不同水平的亲水性的超支化聚(酰胺基胺)(PAMAM)被用作三聚氰胺脲甲醛(MUF)粘合剂的改性剂。在最后的pH调节过程中,用氢氧化钠或以氢氧化钠为代价实现了改性。从表观的凝胶时间可以看出它们的表观共缩合性,并使用傅里叶变换红外(FTIR)光谱以及C-13核磁共振(C-13 NMR)进一步证明了它们的共缩合性。这些结构用作刨花板生产中经常使用的MUF的改性剂,具有多种优势。考虑到经济观点,就树状结构而言,它们的使用更实用且更便宜。此外,无论是在最终使用之前还是在制备的最后阶段,以有限数量的形式将其作为最终添加剂应用,都可以显着提高所生产的刨花板的干内部粘结(IB)强度。湿IB强度和厚度膨胀表明,这种改进扩展到了抗水解降解的能力。考虑到使用热机械分析(TMA)对树脂进行的广泛研究,并同时考虑了每个超支化结构的相关亲水性和支化度,对结果进行了解释。 (C)2014年塑料工程师学会

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