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Development of self-healing coatings for corrosion protection on metallic structures

机译:开发用于金属结构腐蚀防护的自修复涂料

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摘要

Inspired by biological systems, artificial self-healing materials are designed for repairing local damage caused by external factors. The rapidly expanding field of self-healing systems contains, among others, materials with well-defined surface properties. Undoubtedly, enhancing surface functionalisation, by applying smart coatings, enjoys an extensive interest. The self-healing ability is particularly essential property for corrosion protection strategies, especially when the use of one of the most effective corrosion systems, based on chromium(VI) compounds, is now banned by the current registration, evaluation, authorisation and restriction of chemicals legislation. Self-healing protective coatings are produced using macromolecular compounds, ceramics, metals and composites. Considering the wide range of available materials, the number of potential combinations seems to be unlimited. The self-healing action of such coatings is activated by appropriate stimuli: temperature changes, radiation, pH changes, pressure changes and mechanical action. In this paper, the research and practical implications of the various approaches to achieving self-healing functionality of protective coatings, as well as potential developments in this area, are explored.
机译:受生物系统的启发,人工自我修复材料旨在修复外部因素造成的局部损坏。快速发展的自我修复系统领域除其他外,还包括具有明确表面特性的材料。无疑,通过应用智能涂料来增强表面功能性引起了广泛的兴趣。自修复能力是腐蚀防护策略特别重要的特性,尤其是当目前对化学物质的当前注册,评估,授权和限制禁止使用基于铬(VI)化合物的最有效的腐蚀系统之一时立法。自修复保护涂层是使用高分子化合物,陶瓷,金属和复合材料制成的。考虑到可用材料的广泛范围,潜在组合的数量似乎是无限的。此类涂层的自我修复作用可通过适当的刺激来激活:温度变化,辐射,pH值变化,压力变化和机械作用。在本文中,探索了实现保护涂层自修复功能的各种方法的研究和实际意义,以及该领域的潜在发展。

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