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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Process control of printing processes with in-line NIR spectroscopy and elimination of the influence of the substrate on the prediction of the coating weight
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Process control of printing processes with in-line NIR spectroscopy and elimination of the influence of the substrate on the prediction of the coating weight

机译:使用在线近红外光谱技术进行印刷过程的过程控制,并消除基材对涂层重量预测的影响

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Near-infrared (NIR) reflection spectroscopy assisted by chemometric methods was used for in-line monitoring of the coating weights of thin printed layers of clear varnishes applied to papers or polymer foils. The coating weights of the acrylate-based UV-curable layers were in the range between 1 and 7 g m ~(-2). The precision of the multivariate calibration models was found to be strongly affected even by minor variations of the substrate which may lead to considerable mispredictions of the coating weight. The interfering effect of the substrate absorption was compensated by special calibration procedures. Two different approaches were used. Multistage calibration models combining an identification step with quantitative analysis allowed a clear assignment of any spectrum to specific calibration models. Alternatively, the variation of the substrate was included into the calibration model by use of a broader range of calibration samples. The efficiency of both approaches was demonstrated by the prediction of the coating weights of independent test samples. Moreover, in-line measurements were carried out at a sheet fed offset printing press. It was shown that the coating weights of printed layers can be determined with a prediction error of about 0.15 g m ~(-2) for layers on paper or 0.3 g m ~(-2) on PET foils.
机译:由化学计量学方法辅助的近红外(NIR)反射光谱用于在线监测应用于纸张或聚合物箔的透明清漆薄印刷层的涂层重量。丙烯酸酯基UV可固化层的涂层重量在1至7g m〜(-2)之间的范围内。发现即使基材的细微变化也会严重影响多元校准模型的精度,这可能会导致涂层重量的严重错误预测。底物吸收的干扰效应通过特殊的校准程序进行了补偿。使用了两种不同的方法。多级校准模型将识别步骤与定量分析相结合,可以将任何光谱明确分配给特定的校准模型。或者,通过使用更广泛的校准样品范围,将基板的变化包括在校准模型中。通过预测独立测试样品的涂层重量证明了这两种方法的效率。此外,在线测量是在单张纸胶印机上进行的。结果表明,可以确定印刷层的涂层重量,其对于纸上层的预测误差约为0.15 g m〜(-2),而对于PET箔​​则为0.3 g m〜(-2)。

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