Vieira Joana Costa, Mendes António de O, Ribeiro Marcelo Leite, Vieira André Costa, Carta Ana Margarida, Fiadeiro Paulo Torrão, Costa Ana Paula
Fiber Materials and Environmental Technologies Research Unit (FibEnTech-UBI), Universidade da Beira Interior, R. Marquês D'Ávila e Bolama, 6201-001 Covilhã, Portugal.
Aeronautical Engineering Department, São Carlos School of Engineering, University of São Paulo, Av. João Dagnone de Melo, São Carlos 13565-120, SP, Brazil.
Polymers (Basel). 2022 Aug 24;14(17):3448. doi: 10.3390/polym14173448.
Embossing is a functional and strategic process for creating high-quality multi-sensory tissue-paper products. Embossing modifies the sheet surface by generating hill and/or valley designs, changing the third-dimension with a compressive die. This research work specifically concerns the impact study of the engraving finishing geometry on the final properties of tissue paper. This work led us to conclude that, even though the sheets individually present a higher hand-feel (HF) value for the straight finishing geometry, the highest softness was obtained in the two-ply prototype for the round finishing geometry. Moreover, this study confirmed that the HF value reduces with the increase of the bulk, being more accentuated for the micropattern. Relevant differences could not be seen in the spreading kinetics of the liquid droplets over time. Thus, the finishing geometry of the 3D plates did not impact the absorption kinetics on these samples. The finite element model allows us to understand the effect of the plate pattern and its finishing geometry on the paper, and the simulation results were in accordance with the experimental results, showing the same trend where patterns with a round finishing geometry marked the tissue-paper sheet more than patterns with a straight finishing did.
压花是制造高质量多感官薄页纸产品的一种功能性和战略性工艺。压花通过产生凸起和/或凹陷图案来改变纸张表面,使用压缩模具改变其三维形状。这项研究工作特别关注雕刻饰面几何形状对薄页纸最终性能的影响研究。这项工作使我们得出结论,尽管对于直线饰面几何形状,单张纸各自呈现出更高的手感(HF)值,但对于圆形饰面几何形状,在双层原型中获得了最高的柔软度。此外,这项研究证实,HF值随着松厚度的增加而降低,对于微图案更为明显。随着时间的推移,液滴的铺展动力学没有明显差异。因此,3D板的饰面几何形状对这些样品的吸收动力学没有影响。有限元模型使我们能够了解板图案及其饰面几何形状对纸张的影响,模拟结果与实验结果一致,显示出相同的趋势,即圆形饰面几何形状的图案比直线饰面的图案在薄页纸上的印记更明显。