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Development and characterization of silicone/phosphorus modified epoxy materials and their application as anticorrosion and antifouling coatings

机译:有机硅/磷改性环氧材料的开发与表征及其在防腐防污涂料中的应用

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摘要

Epoxy resin is chosen for our present study owing to its exceptional combination of properties such as easy processing, high safety, excellent solvent and chemical resistance, toughness, low shrinkage on cure, good electrical, mechanical and corrosion resistance with excellent adhesion to many substrates. This versatility in formulation made epoxy resins widely applied for surface coatings, adhesives, laminates, composites, potting, painting materials, encapsulant for semiconductor and insulating material for electric devices. There are numerous paint/coating systems basedon epoxy resin available for corrosion and fouling prevention. They however are not completely satisfactory in field applications, where high corrosion, fouling and flame resistance are required. The demand for epoxy resin as corrosion/fouling resistant coatings is restricted mainly due toits inferior characteristics like poor impact strength, high rigidity, and moisture absorbing nature besides inadequate flame retardant properties. It is for this reason that silicones and phosphorus-based compounds are used as modifier in this work by intercrosslinking network mechanism (ICN) to obtain epoxy resin with desired properties ideally suitable for field applications for preventing corrosion and fouling with flame retardantancy.The present work involves the development of solvent free silicone/phosphorus modified epoxy coating systems, since solvent free coating systems are widely used for numerous applications due to their lower cost per unit film thickness, freedom from fire and pollution hazard and ability to provide better performance. For the development of coating systems, epoxy resin (X) serves as base material, hydroxyl terminated dimethylsiloxane (HTPDMS) as modifier, aminopropyltriethoxysilane (APS) as crosslinking agent and dibutyltindilaurate (DBTDL) as catalyst. Polyamidoamine (A), aromatic amine adducts (B) and phosphorus-containing diamine (C) were used as curing agents. The study also describes the evaluation of corrosion resistant behaviour of unmodified epoxy and siliconized epoxy coatings by potentiodynamic polarizationmethod, electrochemical impedance spectroscopy (EIS), salt-spray and antifouling tests. The results are discussed.
机译:选择环氧树脂是因为其优异的性能,例如易于加工,安全性高,优异的耐溶剂和耐化学性,韧性,固化时的收缩率低,良好的电气,机械和耐腐蚀性以及对许多基材的优异附着力等,是本研究选择的环氧树脂。这种配方的多功能性使环氧树脂广泛应用于表面涂料,粘合剂,层压板,复合材料,灌封,油漆材料,半导体密封剂和电气设备的绝缘材料。有许多基于环氧树脂的油漆/涂料系统可用于防止腐蚀和结垢。然而,它们在要求高腐蚀,结垢和阻燃性的现场应用中并不完全令人满意。对环氧树脂作为耐腐蚀/防污涂料的需求受到限制,这主要是由于其阻燃性能不足,其劣质特性如低冲击强度,高刚性和吸湿性。因此,通过交联网络机制(ICN)将有机硅和磷基化合物用作改性剂,以获得具有理想性能的环氧树脂,该环氧树脂非常适用于现场应用,以防止因腐蚀而产生的结垢和阻燃性。涉及开发无溶剂的有机硅/磷改性环氧涂料系统,因为无溶剂涂料系统因其单位膜厚的较低成本,免于着火和污染的危害以及提供更好性能的能力而广泛用于许多应用。为了开发涂料体系,环氧树脂(X)作为基础材料,羟基封端的二甲基硅氧烷(HTPDMS)作为改性剂,氨丙基三乙氧基硅烷(APS)作为交联剂,二月桂酸二丁基锡(DBTDL)作为催化剂。聚酰胺酰胺(A),芳香胺加合物(B)和含磷二胺(C)用作固化剂。该研究还描述了通过电位动力学极化方法,电化学阻抗谱(EIS),盐雾和防污测试评估未改性环氧和硅化环氧涂料的耐腐蚀性能。讨论了结果。

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