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Enhanced paint adhesion to metals using in situ phosphatizing coatings

机译:使用原位磷化涂层增强涂料对金属的附着力

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摘要

Adhesin of an organic coating is related to the density of weak secondary bonds,in general,and strong primary chemical bonds,in particular,produced between the coating and the substrate as well as their distributions,and also on the morphology and quality of coating.A 'green technology' for metal finishing,based on in situ phosphatizing coatings (ISPCs),is described to enhance the presence of primary bonds and applied to cold-rolled steel,2024 T3 aluminum alloy,and Ti-6aL-4V titanium alloy.When an ISPC is applied to an untreated metal substrate,the in situ phosphatizing reagent (ISPR)reacts chemically and/or physically with the metal surace to prdouce a metal phosphate layer and simulataneously forms covalent phosphorus-oxygen-carbon linkages with the polymer coating.In an ISPC,the ISPR is designed both to phosphate the metal surface in situ and,at the same time,to catalyze the cring of the polymer coating or paint.Paint systems cured by ISPR give a dense and corrosion-resistant and a thermally stable and fedect-free coating.The primary bond and the less permeable paint coatings produced in ISPCs are shown to have enhanced adhesion adn inhibit substrate corrosion.Moreover,an ispc is a chromate-free single-step process in which the phosphate formation and polymer curing can occur independently,but simultaneously.
机译:有机涂层的黏附素通常与弱的次级键的密度有关,特别是与涂层与基材之间产生的强的一级化学键及其分布以及涂层的形态和质量有关。描述了一种基于原位磷化涂层(ISPC)的用于金属表面处理的“绿色技术”,以增强初级键的存在,并应用于冷轧钢,2024 T3铝合金和Ti-6aL-4V钛合金。当将ISPC应用于未处理的金属基材时,原位磷化试剂(ISPR)与金属表面发生化学和/或物理反应,形成金属磷酸盐层,并与聚合物涂层同时形成共价的磷-氧-碳键。在ISPC中,ISPR既可以原位对金属表面进行磷化处理,又可以催化聚合物涂层或涂料的粘结。通过ISPR固化的涂料体系具有致密,耐腐蚀的特性。热固性和无粘结性涂料。ISPC中生产的初级粘结层和渗透性较低的涂料具有增强的附着力并抑制基材腐蚀。此外,ispc是一种无铬的单步法,其中磷酸盐的形成和聚合物固化可以独立发生,但同时发生。

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