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Durability of the Exterior Transparent Coatings on Nano-Photostabilized English Oak Wood and Possibility of Its Prediction before Artificial Accelerated Weathering

机译:纳米光稳定型英语橡木的外部透明涂层的耐久性及其在人工加速风化之前的预测可能性

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摘要

Changes in surface material characteristics can significantly affect the adhesion and overall life of coatings on wood. In order to increase the durability of transparent exterior coatings, it is possible to use the surface modification of wood with UV-stabilizing substances. In this work, selected types of surface modifications using benzotriazoles, HALS, ZnO and TiO nanoparticles, and their combinations were applied to oak wood ( , L.). On such modified surfaces, the surface free energy, roughness, and contact wetting angle with three selected types of exterior transparent coatings were subsequently determined. An oil-based coating, waterborne acrylic thick layer coating, and thin-layer synthetic coating were tested and interaction with the aforementioned surface modifications was investigated after 6 weeks of accelerated artificial weathering. The results of changes in the initially measured surface characteristics of the modified oak wood were compared to the real results of degradation of coatings after artificial accelerated weathering. The positive effect of surface modification, in particular the mixture of benzotriazoles, HALS, and ZnO nanoparticles on all kinds of coatings was proven, and the best results were observed in thick-film waterborne acrylic coating. The changes in the measured surface characteristics corresponded to the observed durability of the coatings only when measured by wetting using drops of the tested coatings.
机译:表面材料特性的变化会严重影响涂料在木材上的附着力和整体寿命。为了增加透明外部涂料的耐久性,可以使用具有紫外线稳定剂的木材表面改性。在这项工作中,使用苯并三唑,HALS,ZnO和TiO纳米颗粒及其组合的选定类型的表面改性方法被应用于橡木(L.)。随后在这样的改性表面上确定与三种选定类型的外部透明涂层的表面自由能,粗糙度和接触润湿角。测试了油基涂料,水性丙烯酸厚层涂料和薄层合成涂料,并在加速人工风化6周后研究了与上述表面改性的相互作用。将改性橡木的最初测量的表面特性的变化结果与人工加速风化后涂层降解的真实结果进行了比较。证明了表面改性的积极作用,特别是苯并三唑,HALS和ZnO纳米颗粒的混合物对各种涂料的积极作用,并且在厚膜水性丙烯酸涂料中观察到了最佳效果。仅当通过使用测试涂层的液滴润湿来测量时,所测量的表面特性的变化对应于所观察到的涂层的耐久性。

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