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Comparison of two encapsulation systems of UV stabilizers on the UV protection efficiency of wood clear coats

机译:两种紫外线稳定剂封装系统对木清漆的紫外线防护效率的比较

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摘要

One of the major issues in the wood industry is the durability of clear coatings. The addition of organic ultraviolet absorbers (UVAs) improves coating resistance by the absorption and conversion of UV radiation into harmless heat. Organic UVAs are, however, easily degraded by free radicals produced by photodegradation inside the polymer matrix and are prone to migration in the coating. In this study, commercial UVAs and hindered amine light stabilizers (HALS) entrapped into poly(methyl methacrylate) (PMMA) microspheres and CaCO3 templates coated with UV-responsive polymers were added into clear acrylic water-based coating formulation. Artificial accelerated weathering experiments were performed on each formulation. Raman spectroscopy mapping was performed to visualize the concentration and distribution of UVAs and HALS. This study also presents a comparison of the mechanical properties of coatings obtained by dynamic mechanical analysis. Results showed that coating mechanical properties were improved when using encapsulated UVAs and HALS inside PMMA microspheres. The color change of the wood and coating system was minimized and the production of photo-oxidation compounds in the binder was also limited.
机译:木材工业的主要问题之一是透明涂料的耐久性。有机紫外线吸收剂(UVA)的添加通过吸收紫外线并将其转化为无害的热量来提高涂层的抵抗力。然而,有机UVA很容易被聚合物基质内部光降解产生的自由基降解,并易于在涂料中迁移。在这项研究中,将捕获在聚甲基丙烯酸甲酯(PMMA)微球中的商用UVA和受阻胺光稳定剂(HALS)和涂有UV响应聚合物的CaCO3模板添加到透明的丙烯酸水性涂料配方中。对每种配方进行人工加速老化实验。进行拉曼光谱作图以可视化UVA和HALS的浓度和分布。这项研究还提出了通过动态力学分析获得的涂层的机械性能的比较。结果表明,在PMMA微球内部使用封装的UVA和HALS时,涂层的机械性能得到了改善。木材和涂料体系的颜色变化最小,并且粘合剂中光氧化化合物的产生也受到限制。

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