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Thermal Healing, Reshaping and Ecofriendly Recycling of Epoxy Resin Crosslinked with Schiff Base of Vanillin and Hexane-1,6-Diamine

机译:香兰素和1,6-己二胺希夫碱交联的环氧树脂的热修复,整形和环保回收

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摘要

A bio-derived dihydroxylimine hardener, Van2HMDA, for the curing of epoxy resin was prepared from vanillin (Van) and hexamethylene-1,6-diamine (HMDA) by Schiff base formation. The epoxy resin of diglycidyl ether of bisphenol A was cured with Van2HMDA in the presence of the catalyst, 2-ethyl-4-methylimidazole (EMI). The crosslinked epoxy resin showed thermal-healing properties at elevated temperatures. Moreover, the crosslinked epoxy resin can be reshaped by heating via imine metathesis of the hardener units. The imine metathesis of Van2HMDA was confirmed experimentally. Stress-relaxation properties of the epoxy resin crosslinked with Van2HMDA were investigated, and the activation energy obtained from Arrhenius plots of the relaxation times was 44 kJ/mol. The imine bonds in the epoxy polymer matrix did not undergo hydrolysis after immersing in water at room temperature for one week. However, in the presence of acid, the crosslinked polymer was easily decomposed due to the hydrolysis of imine bonds. The hydrolysis of imine bonds was used for the ecofriendly recycling of crosslinked polymer. It is inferred that thermal-healing, reshaping, and reprocessing properties can be implemented in the various crosslinked epoxy resins with the bio-derived dihydroxylimine hardener, albeit the recycled epoxy resin is of inevitably lower quality than the original material.
机译:由香草醛(Van)和六亚甲基-1,6-二胺(HMDA)形成席夫碱,制备了用于环氧树脂固化的生物衍生二羟基limine固化剂Van2HMDA。在催化剂2-乙基-4-甲基咪唑(EMI)的存在下,用Van2HMDA将双酚A的二缩水甘油醚的环氧树脂固化。交联的环氧树脂在升高的温度下显示出热修复性质。此外,交联的环氧树脂可通过硬化剂单元的亚胺复分解通过加热而重塑。实验证实了Van2HMDA的亚胺复分解。研究了用Van2HMDA交联的环氧树脂的应力松弛特性,从弛豫时间的Arrhenius图获得的活化能为44 kJ / mol。环氧聚合物基质中的亚胺键在室温下浸入水中一周后未发生水解。然而,在酸的存在下,由于亚胺键的水解,交联的聚合物容易分解。亚胺键的水解用于交联聚合物的环保回收。可以推断,使用生物衍生的二羟基limine固化剂可以在各种交联环氧树脂中实现热修复,整形和再加工性能,尽管再生环氧树脂的质量不可避免地要比原始材料低。

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