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Recyclable High-Performance Epoxy-Anhydride Resins with DMP-30 as the Catalyst of Transesterification Reactions

机译:用DMP-30可回收高性能环氧树脂树脂作为酯交换反应的催化剂

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摘要

Epoxy-anhydride resins are widely used in engineering fields due to their excellent performance. However, the insolubility and infusibility make the recycling of epoxy resins challenging. The development of degradable epoxy resins with stable covalent networks provides an efficient solution to the recycling of thermosets. In this paper, 2,4,6-tris(dimethylaminomethyl)phenol (DMP-30) is incorporated into the epoxy-glutaric anhydride (GA) system to prepare high-performance epoxy resins that can be recycled below 200 °C at ordinary pressure via ethylene glycol (EG) participated transesterification. The tertiary amine groups in DMP-30 can catalyze the curing reaction of epoxy and anhydride, as well as the transesterification between ester bonds and alcoholic hydroxyl groups. Compared with early recyclable anhydride-cured epoxy resins, the preparation and recycling of diglycidyl ether of bisphenol A (DGEBA)/GA/DMP-30 systems do not need any special catalysts such as TBD, Zn(Ac)2, etc., which are usually expensive, toxic, and have poor compatibility with other compounds. The resulting resins have glass transition temperatures and strengths similar to those of conventional epoxy resins. The influences of GA content, DMP-30 content, and temperature on the dissolution rate were studied. The decomposed epoxy oligomer (DEO) is further used as a reaction ingredient to prepare new resins. It is found that the DEO can improve the toughness of epoxy resins significantly. This work provides a simple method to prepare readily recyclable epoxy resins, which is of low-cost and easy to implement.
机译:由于其出色的性能,环氧酸酐树脂广泛用于工程领域。然而,不溶性和脱臼使环氧树脂的再循环攻击。具有稳定的共价网络可降解的环氧树脂的发展为热固性件的回收提供了有效的解决方案。在本文中,将2,4,6-三(二甲基氨基甲基)苯酚(DMP-30)掺入环氧树脂 - 戊二酸酐(GA)体系中以制备高性能环氧树脂,其可以在普通压力下再循环到200℃以下。通过乙二醇(例如)参与酯交换。 DMP-30中的叔胺基团可以催化环氧和酸酐的固化反应,以及酯键和醇羟基之间的酯交换。与早期可回收的酸酐固化的环氧树脂相比,双酚A(DGEBA)/ GA / DMP-30系统的二缩水甘油醚的制备和再循环不需要任何特殊催化剂,例如TBD,Zn(AC)2等通常昂贵,有毒,与其他化合物相容差。得到的树脂具有与常规环氧树脂类似的玻璃化转变温度和强度。研究了GA含量,DMP-30含量和温度对溶出速率的影响。分解的环氧低聚物(DEO)进一步用作制备新树脂的反应成分。结果发现,DEO可以显着提高环氧树脂的韧性。这项工作提供了一种制备易可回收的环氧树脂的简单方法,这是低成本且易于实施的。

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