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Modification of urea-formaldehyde resin adhesives with oxidized starch using blocked pMDI for plywood

机译:用氧化淀粉用封闭的PMDI为胶合板改性尿素 - 甲醛树脂粘合剂

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摘要

This study investigated the modification of UF resins of two different formaldehyde/urea (F/U) mole ratios with OS levels, using blocked pMDI (B-pMDI) as a cross-linker for plywood. Fourier-transform infrared (FTIR) spectroscopy confirmed the presence of C=O of aldehyde and carboxyl groups in the OS. The UF-OS adhesives then were prepared by adding 5%, 10%, and 15% OS based on the UF resin's solid content as well as 1% B-pMDI based on the OS dry weight as a cross-linker. FTIR spectra confirmed the formation of ester groups at 1348 cm(-1) owing to the reaction of carboxyl groups of OS with -NCO groups of B-pMDI. Regardless of the F/U mole ratio, both the solids content and viscosity of the UF resins decreased, but the gelation time increased as the OS level increased. Differential scanning calorimetry showed that the activation energy of neat UF resin with 1.0 F/U mole ratio was higher than that with 1.2 F/U mole ratio; however, the opposite was true after the OS addition. These results showed that the modified UF resins improved the adhesion strength and decreased formaldehyde emission of plywood. The best performance of modified UF resins with different F/U mole ratios of 1.0 and 1.2 was found at 10% OS based on resin's solid content.
机译:该研究研究了使用OS水平的两种不同甲醛/尿素(F / U)摩尔比的UF树脂的改性,用封闭的PMDI(B-PMDI)作为胶合板的交联剂。傅里叶变换红外(FTIR)光谱证实了OR在OS中醛和羧基的C = O的存在。然后通过基于UF树脂的固体含量和基于OS干重作为交联剂,通过基于UF树脂的固体含量和1%B-PMDI加入1%B-PMDI来制备UF-OS粘合剂。 FTIR光谱通过与-NCO基团的B-PMDI的-NCO组的反应确认在1348cm(-1)中形成酯基的形成。无论F / U摩尔比如何,UF树脂的固体含量和粘度都降低,但随着OS水平的增加而增加,凝胶化时间增加。差示扫描量热法显示,具有1.0f / u摩尔比的整齐UF树脂的活化能量高于1.2 f / u摩尔比的活化能量。然而,OS添加后,相反是真实的。这些结果表明,改性的UF树脂改善了粘附强度并降低了胶合板的甲醛排放。基于树脂的固体含量,在10%OS中发现了不同F / U摩尔比为1.0和1.2的改性UF树脂的最佳性能。

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