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老化桥梁涂层与实验室中相同涂层比较的良好结果。

Promising Results of the Comparison of Coatings on Aged Bridges and of Same Coatings in Laboratory.

作者信息

Królikowska Agnieszka, Komorowski Leszek, Langer Ewa, Zubielewicz Małgorzata

机构信息

Road and Bridge Research Institute, 03302 Warsaw, Poland.

Institute for Engineering of Polymer Materials and Dyes, 87100 Torun, Poland.

出版信息

Materials (Basel). 2022 Apr 22;15(9):3064. doi: 10.3390/ma15093064.

Abstract

Many factors contribute to the high durability of anti-corrosion coatings. The most frequently mentioned are: appropriate protection design selected for the operating conditions, type of protection-type of metal and/or coatings, surface preparation, and proper application. Particular emphasis is placed on the type of protective materials. A lot of research is also carried out in this direction. In this article, we want to show that the standard protection with an epoxy/polyurethane system with thickness as recommended in ISO 12944-5: 2019, without special active fillers, is able to ensure high durability in a C4/C5 environment. This is confirmed by the presented results of electrochemical analysis, visual evaluation of coatings and adhesion of coatings and allows the use of well-known, inexpensive paint systems, assuming greater emphasis on their proper application. The results of the assessment of coating systems on bridges were used for comparison with the results obtained in various types of accelerated tests of the same coating systems and to make the selection of the optimal version of the laboratory tests.

摘要

许多因素促成了防腐涂层的高耐久性。最常被提及的因素有:针对运行条件选择的合适防护设计、防护类型(金属和/或涂层的类型)、表面处理以及正确的施工。特别强调防护材料的类型。在这个方向上也进行了大量研究。在本文中,我们想要表明,按照ISO 12944-5: 2019中推荐的厚度,采用环氧/聚氨酯体系的标准防护,在没有特殊活性填料的情况下,能够在C4/C5环境中确保高耐久性。电化学分析结果、涂层的目视评估以及涂层附着力都证实了这一点,并且在更强调正确施工的情况下,允许使用知名且价格低廉的涂料体系。桥梁涂层系统的评估结果用于与相同涂层系统在各种类型加速试验中获得的结果进行比较,并用于选择实验室试验的最佳版本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d8c/9105581/744d92a3f25a/materials-15-03064-g001.jpg

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