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Effect of changes of the coating thickness on the in-line monitoring of the conversion of photopolymerized acrylate coatings by near-infrared reflection spectroscopy

机译:涂层厚度的变化对通过近红外反射光谱在线监测光聚合丙烯酸酯涂层转化率的影响

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摘要

Near-infrared (NIR) reflection spectroscopy was used for in-line monitoring of the conversion and the thickness of thin UV-cured acrylate coatings applied to polymer foils. Quantitative analysis of the spectroscopic data was performed either with the aid of PLS-based chemometric models or by band integration according to the Beer-Lambert law. Unintended changes of the thickness of the coating, e.g. caused by variation of the web speed, were found to preclude the correct analysis of the conversion by chemometric methods. In order to correct the conversion data for such changes, NIR spectra were recorded before and after UV irradiation. The conversion was determined from the ratio of the band integrals of the overtone of the acrylic double bond at 1620 nm. It was shown that quantitative conversion data with high precision were achieved in this way. The method was used for in-line monitoring of the conversion in clear and pigmented coatings, which were applied to OPP foil by roll coating at line speeds up to 120 m min(-1).
机译:近红外(NIR)反射光谱用于在线监测应用于聚合物箔的薄紫外线固化丙烯酸酯涂料的转化率和厚度。借助基于PLS的化学计量学模型或根据比尔-兰伯特定律进行谱带积分对光谱数据进行定量分析。涂层厚度的意外变化,例如人们发现,由于网速变化引起的化学反应无法通过化学计量方法对转化率进行正确的分析。为了校正这种变化的转换数据,在紫外线照射之前和之后记录近红外光谱。由丙烯酸双键的泛音在1620nm下的带积分的比率来确定转化率。结果表明,以这种方式获得了高精度的定量转换数据。该方法用于在线监测透明和有色涂料中的转化率,这些涂料通过辊涂以高达120 m min(-1)的线速度施加到OPP箔上。

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