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TECHNOLOGY AND APPLICATION OF ANTI-GRAFFITI COATING SYSTEMS FOR ROLLING STOCK

机译:轧制涂层涂层涂层系统的技术与应用

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The article describes the technology and application of anti-graffiti coating systems for rolling stock, i.e. coatings resistant to devastation by graffiti-vandals and easy to be renovated later. Paint systems for rolling stock must fulfill mechanical and qualitative properties to longer maintenance protective and decorative properties on the vehicle. Graffiti spray paints should be treated as dangerous substances for coatings because they contain various solvents and other substances that might soften or migrate into protective coating and cause delamination of the coating system and finally lead to shortening durability of the coating surface. Surface free energy is of interest in the field of coating technologies and cleaning procedures, because it is a factor which affects such surface properties and interfacial interactions as adhesion, adsorption and wetting. The contact angle of a liquid on a solid surface is a measure of a free surface energy so the study of wettability and free surface energy is of great practical interest in industrial processes, especially for paints with special properties like anti-graffiti for rolling stock industry. This paper presents results of the investigation on the free surface energy for the anti-graffiti BO100-AGR coating developed in laboratory of Barwa Company. The system consists of high solid corrosion protection primer, putty, filler, basecoat and anti-graffiti clearcoat. The research was based on anticorrosion coatings system with transparent layer with reduced adhesion of each subsequent types of contamination.
机译:本文介绍了用于滚动涂料的抗涂鸦涂层系统的技术和应用,即涂鸦通过涂鸦破坏者造成损坏,易于翻新。用于滚动股票的涂料系统必须满足机械和定性的性能,以更长的维护保护和装饰性能。涂鸦喷漆应视为涂料的危险物质,因为它们含有各种溶剂和可能软化或迁移到保护涂层的其他物质并引起涂层系统的分层,并且最终导致涂层表面的缩短耐久性。表面自由能对涂层技术和清洁程序的领域感兴趣,因为它是影响这种表面性质和界面相互作用作为粘附,吸附和润湿的因素。固体表面上的液体的接触角是自由表面能量的量度,因此对工业过程的润湿性和自由表面能的研究具有很大的实际兴趣,特别是对于具有用于轧制工业的防涂鸦等特殊性质的涂料。本文提出了在巴尔瓦公司实验室开发的防涂料BO100-AGR涂层的自由表面能源的研究。该系统由高固体腐蚀保护底漆,腻子,填料,底涂层和防涂鸦透明涂层组成。该研究基于具有透明层的防腐涂层系统,透明层减少了每种后续污染的粘附性。

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