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Glycolysis of epoxide-amine hardened networks. I. Diglycidylether/aliphatic amines model networks

机译:环氧胺硬化网络的糖酵解。一,二缩水甘油醚/脂肪胺模型网络

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摘要

Epoxide-amine hardened networks are high performance materials in composites, coatings and adhesives ares. Solvolysis is an efficient method of polymer waste valorisation, particularly for fibre-reinforced composites, allowing recovery of inorganic parts (fibres, charges, metals), whereas the matrix yields depolymerization products which may be recycled in useful raw materials for the chemical industry. However, the curing of epoxides with amines results from non-reversible condensation reactions, and then, the controlled depolymerization by chemical reactives seems to be impossible. We have found that the networks from diglycidylether of bisphenol-A (DGEBA) cured with polyamine may be decomposed by glycols, in relatively mild conditions, leading to 'liquefaction' of the matrix. A solvolytic cleavage of ether linkages, originally present in the DGEBA molecular structure, has been identified. Apparently, the reaction is a transetherification one. Depolymerization products are, for a part, aromatic hydroxyl terminated low molecular weight compounds.
机译:环氧胺硬化网络是复合材料,涂料和胶粘剂领域中的高性能材料。溶剂分解法是一种有效的聚合物废物增值方法,尤其是对于纤维增强的复合材料而言,可以回收无机零件(纤维,装料,金属),而基体则产生解聚产物,可将其回收用于化学工业的有用原料中。但是,用胺类固化环氧化物是由于不可逆的缩合反应所致,因此通过化学反应物控制的解聚似乎是不可能的。我们已经发现,在相对温和的条件下,由多胺固化的双酚A(DGEBA)的二缩水甘油醚网络(DGEBA)可能会被乙二醇分解,从而导致基质“液化”。已经鉴定出最初存在于DGEBA分子结构中的醚键的溶剂分解。显然,该反应是一种醚交换反应。解聚产物在某种程度上是芳族羟基封端的低分子量化合物。

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