Determining point spread function of pressure sensitive labels facestock

Katarina Itrić Ivanda, Zrinka Jakopčević, Dorotea Kovačević, Suzana Pasanec Preprotić
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Abstract

Pressure sensitive labels (PSL) are a growing part of graphic industry. In the past, their design and application were rather limited to basic packaging and product information while currently labels are receiving more and more attention because they are customer's first contact with a product. PSL composition includes release liner, adhesive and facestock. Facestock can be considered as the most important part of the label since its properties determine the final label appearance. Nowadays, facestock material can be both paper and filmic. Therefore, it is necessary to perform a comprehensive characterization of pressure sensitive labels facestock in order to investigate the future impact of optical dot gain on the print. Point spread function is a measure of scattering and absorption of light in the given substrate. It carries information regarding paper composition and its future behaviour in term of optical dot gain. In the study, seven different facestock substrates were examined, two made from biogenic polyethylene, and five paper based PSL facestocks, three of which are made from 15% agro industrial waste by-products (barley, citrus and grape). Point spread function of the substrates were obtained by projecting collimated red laser light source on the facestock of pressure sensitive labels. Although the laser light used in this experiment was characterized by a narrow beam width of 0.5 mm and low divergence, <1 mrad, the beam was further converged and then passed through a space filter to ensure collimation of the laser beam which was then incident perpendicular to the set sample. Laser profile was firstly obtained by photodiode profiling. Based on the measured values of light intensity, the laser light profile was determined, as well as the average beam width that was needed for further image analysis. Image of the light scattering within the substrate was obtained perpendicular to the surface with Canon EOS 5DS camera. From the obtained image, laser profile was removed, and the resulting profile gives the point spread function of the substrate. The resulting images were processed with commercially available image analysis software (ImageJ). The mean background intensity subtracted from each individual pixel was determined to remove the background effect, and the distribution of the scattered light profile was achieved. The results showed that facestock composition has a high influence on PSF shape and width.
压敏标签表面的确定点扩散函数
压敏标签(PSL)是图形行业中一个日益增长的部分。在过去,标签的设计和应用仅限于基本的包装和产品信息,而现在,标签作为顾客与产品的第一次接触,越来越受到重视。PSL组成包括释放衬垫,粘合剂和面托。Facestock可以被认为是标签中最重要的部分,因为它的属性决定了最终的标签外观。如今,表面材料既可以是纸也可以是胶片。因此,有必要对压敏标签的表面进行全面的表征,以研究光学网点增益对打印的影响。点扩散函数是测量光在给定衬底中的散射和吸收。它携带有关纸张成分及其在光学网点增益方面的未来行为的信息。在这项研究中,研究人员检测了七种不同的面材基质,其中两种由生物聚乙烯制成,五种由纸基PSL制成,其中三种由15%的农业工业废物副产品(大麦、柑橘和葡萄)制成。通过对准直的红色激光光源在压敏标签表面的投影,得到了基板的点扩散函数。虽然本实验中使用的激光光束宽度较窄,只有0.5 mm,发散度较低,<1 mrad,但为了保证光束的准直,该光束会经过空间滤光片,然后垂直于设定的样品入射。激光轮廓首先是通过光电二极管轮廓获得的。根据光强的测量值,确定了激光的光廓线,以及进一步图像分析所需的平均光束宽度。利用佳能EOS 5DS相机垂直于基片表面获得了基片内部的光散射图像。从得到的图像中去除激光轮廓,得到的轮廓给出了基片的点扩散函数。用市售的图像分析软件(ImageJ)对所得图像进行处理。确定每个像素的平均背景强度,去除背景效应,得到散射光剖面的分布。结果表明,坡面成分对坡面层形状和宽度有较大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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