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Natural versus accelerated weathering: Understanding water kinetics in bilayer coatings

机译:自然风化与加速风化:了解双层涂料中的水动力学

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摘要

Exposure to water is a key issue in the performance of multilayer coatings. It may take place in different forms, i.e. as rainfall, dew and humidity variation. Consequently, coatings will experience time-dependent water activity fluctuations. In industrial practice, coatings are subjected to artificial water activity fluctuations in weathering tests. Little is known about the connection between these tests and the reality experience by a coating. This article presents a theoretical investigation of the response of multilayer coatings to water activity fluctuations. This investigation is performed on the basis of a validated model for water transport in hydrophilic base coat/hydrophobic top coat systems. The study aims to understand how permeability and sorption properties determine the overall coating response to fluctuations. It is concluded that present accelerated weathering tests do not mimic natural weathering due to the response time of the considered systems, which are insensitive to rapid fluctuations.
机译:暴露于水是多层涂料性能的关键问题。它可能以不同的形式发生,即降雨,露水和湿度变化。因此,涂料将经历随时间变化的水活度波动。在工业实践中,涂料在风化试验中会受到人造水活度波动的影响。对于这些测试与涂层的真实体验之间的联系知之甚少。本文介绍了多层涂料对水活度波动的响应的理论研究。该研究是基于在亲水性底漆/疏水性面漆体系中水传输的验证模型的基础上进行的。该研究旨在了解渗透性和吸附性能如何决定整体涂层对波动的响应。结论是,由于所考虑的系统的响应时间对快速波动不敏感,因此当前的加速老化测试不能模拟自然老化。

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