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Physicochemical investigation of chemical paint removers. II: Role and mechanism of phenol in the removal of polyurethane coatings

机译:化学除漆剂的理化研究。二:苯酚在聚氨酯涂料去除中的作用和机理

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Thermal and spectroscopic techniques have been used to study the interactions of phenol with model polyurethane coatings. Previous work has pointed to phenol as the principal source of polymer degradation in methylene chloride/phenol paint stripping mixtures. Thermal analysis demonstrates that the addition of phenol leads to severe depression in T-g and outright coating failure. Exposure appears to cause chain scission, leading to significant weight loss during thermal analysis. XPS confirms the deposition of methylcellulose stabilizer at the surface, but also indicates breaches in the conformal coating which we attribute to polyurethane degradation. Raman and ATR-FTIR spectroscopy confirm chemical modification of the polyurethane by phenol, leading to the proposed model of degradation by nucleophilic attack. (C) 2015 Elsevier B.V. All rights reserved.
机译:热学和光谱学技术已用于研究苯酚与聚氨酯模型涂料的相互作用。先前的工作已经指出,苯酚是二氯甲烷/苯酚涂料剥离混合物中聚合物降解的主要来源。热分析表明,苯酚的添加会导致T-g严重降低和彻底的涂层失效。暴露似乎导致断链,导致热分析过程中重量明显减少。 XPS证实了甲基纤维素稳定剂在表面上的沉积,但也表明保形涂层中的破裂,这归因于聚氨酯的降解。拉曼光谱和ATR-FTIR光谱证实了苯酚对聚氨酯的化学修饰,从而导致了拟议的亲核攻击降解模型。 (C)2015 Elsevier B.V.保留所有权利。

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