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Spot Application of a Transparent Nanoclay Layer to Provide Post-print Laser Marking Functionality on High Brightness 100 Calcium Carbonate Coatings

机译:透明纳米粘土层的施加施加在高亮度100%碳酸钙涂层上提供印刷后的激光标记官能度

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摘要

Laser marking is a widely used technique to form individualised identification, such as product numbering or 2D coding. The technique is based on ink removal via laser ablation, which requires local heating with a laser beam, i.e. the coating layer must absorb at the particular wavelength of the laser to provide the heat to vaporise the ink layer. Calcium carbonate shows a very low absorption at the wavelength peaks of the typical CO_2 lasers used, which has led to the need to incorporate a threshold amount of other minerals, however generally at the cost of losing natural brightness. Post application of an ultrathin nanoclay or nanosilica layer onto a high brightness calcium carbonate coating is shown to support laser ablation of offset ink with all the standard laser wavelengths, without compromising the optical appearance.
机译:激光标记是一种广泛使用的技术,可形成个性化识别,例如产品编号或2D编码。该技术基于激光消融的墨水去除,这需要用激光束局部加热,即涂层必须在激光器的特定波长处吸收,以提供蒸发油墨层的热量。碳酸钙显示出在所用的典型CO_2激光器的波长峰处的非常低的吸收,这导致需要掺入阈值量的其他矿物质,然而通常以减少自然亮度的成本。将超薄纳米粘土或纳米硅层的后施加到高亮度碳酸钙涂层上,示出了具有所有标准激光波长的偏移墨水的激光烧蚀,而不会损害光学外观。

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