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UV ageing studies: evaluation of lightfastness declarations of commercial acrylic paints

机译:紫外线老化研究:评估商用丙烯酸涂料的耐光性

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The lightfastness declarations of several different commercial acrylic paints and different quality series were tested by artificial UV ageing. To evaluate their lightfastness declarations, three acrylic colours (cadmium red, ultramarine blue and chromium oxide green) from six companies (Lascaux, Liquitex, Lukas, Rembrandt, Schmincke, and Winsor & Newton) were analysed before and after UV exposure. Characterisation and identification of these materials were carried out with Py–GC/MS, FTIR–ATR analyses, and colour measurements. Particular attention was focused on the Py–GC/MS measurements and on comparison of the single-shot method for pyrolysis of polymers and the double-shot mode which enables a unique combination of pyrolysis methods for analysis of polymers and thermal desorption for documentation of the volatile compounds. Depending on the particular company and the specific value of the lightfastness declaration, different binding media (i.e. poly(EA/MMA), poly(nBA/MMA), and poly(2-EHA/MMA)), and fillers (i.e. kaolinite, calcium carbonate, barite, and talc) were characterised and identified by Py–GC/MS and FTIR–ATR analyses. After UV exposure, several alteration processes with consequent formation of volatile compounds or new products were observed by both techniques, especially for the blue paints. In particular, the double-shot mode of Py–GC/MS enabled the detection of oxidation products, which could not be detected with the single-shot mode. Comparison of the lightfastness declarations for each of the blue, green, and red paints and the noted alterations broadly agreed for most of the paints.
机译:通过人工UV老化测试了几种不同商业丙烯酸涂料和不同质量系列的耐光性声明。为了评估其耐光性声明,在紫外线照射前后,分析了六家公司(Lascaux,Liquitex,Lukas,Rembrandt,Schmincke和Winsor&Newton)的三种丙烯酸色(镉红,群青和氧化铬绿)。这些物质的表征和鉴定通过Py–GC / MS,FTIR–ATR分析和颜色测量进行。特别关注的是Py–GC / MS的测量,以及聚合物热解的单发方法和双发模式的比较,该模式可以将热解方法用于聚合物分析和热脱附的独特组合,以记录聚合物。挥发性化合物。根据特定公司和耐光性声明的特定值,可以使用不同的粘合介质(例如,聚(EA / MMA),聚(nBA / MMA)和聚(2-EHA / MMA))和填充剂(即高岭土,碳酸钙,重晶石和滑石粉)通过Py–GC / MS和FTIR–ATR分析进行了表征和鉴定。紫外线照射后,两种技术都观察到了几种改变过程,从而形成了挥发性化合物或新产品,特别是对于蓝色涂料。特别是,Py–GC / MS的双发模式可以检测氧化产物,而单发模式则无法检测到。对蓝色,绿色和红色每种涂料的耐光性声明进行比较,并注意到大多数涂料的标注更改大体上一致。

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