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Weathering resistance of waterbased UV-cured polyurethane-acrylate coatings

机译:水性紫外线固化聚氨酯丙烯酸酯涂料的耐候性

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The light stability of waterbased UV-cured polyurethane-acrylate (PUA) coatings has been tested in an accelerated QUV-A weatherometer. Infrared spectroscopy was used to monitor both the ultrafast polymerization of the acrylate double bond upon intense illumination, and the chemical changes occurring upon photoageing of 30 μm thick clearcoats. The UV-curing reaction was hardly affected by the addition of the HALS radical scavengers and UV absorbers needed to improve the light stability of water-based UV-cured PUA coatings. The α-hydroxyphenyl ketone used as photoinitiator was shown to disappear rapidly upon UV-curing and early QUV exposure, thus having no detrimental effect on the weathering resistance. The urethane linkage (C-NH) is the most sensitive to photodegradation. Such waterbased PUA coatings were found to be as resistant to weathering as typical UV-cnred PUA coatings. In the presence of light stabilizers, they undergo only minor chemical changes after as much as 4800 h QUV-A ageing, the surface erosion being restricted to a few micron thick layer. The observed permanency of the UV-absorber after such heavy exposure ensures a longlasting UV-screen effect of the protective coating. Waterbased UV-cured PUA coatings proved to be more resistant to hydrolysis than melamine-acrylate thermosets.
机译:水性UV固化聚氨酯丙烯酸酯(PUA)涂料的光稳定性已在加速QUV-A耐候计中进行了测试。红外光谱用于监测强光照射下丙烯酸酯双键的超快聚合反应,以及在30μm厚的透明涂层光老化后发生的化学变化。 UV固化反应几乎不受添加HALS自由基清除剂和UV吸收剂的影响,这些自由基吸收剂和UV吸收剂可改善水性UV固化的PUA涂料的光稳定性。用作光引发剂的α-羟苯基酮经紫外线固化和QUV早期暴露后迅速消失,因此对耐候性没有不利影响。氨基甲酸酯键(C-NH)对光降解最敏感。发现这种水性PUA涂料与典型的UV固化PUA涂料一样耐候性。在存在光稳定剂的情况下,经过长达4800 h的QUV-A老化,它们仅经历了微小的化学变化,表面侵蚀被限制在几微米厚的层内。在大量暴露后观察到的紫外线吸收剂的持久性可确保保护涂层具有持久的紫外线屏蔽效果。事实证明,水性UV固化的PUA涂料比三聚氰胺丙烯酸酯热固性涂料更耐水解。

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