Henke Milena, Lis Barbara, Krystofiak Tomasz
Department of Wood Science and Thermal Techniques, Faculty of Forestry and Wood Technology, Poznan University of Life Sciences, 60-627 Poznań, Poland.
Materials (Basel). 2023 Jun 19;16(12):4468. doi: 10.3390/ma16124468.
In the upcoming years, it is expected that more furniture will be built from honeycomb panels due to the growing demand for lightweight, long-lasting furnishings. High-density fiberboard (HDF), previously used in the furniture industry as back walls in box furniture or drawer components, has become a popular facing material used in the production of honeycomb core panels. Varnishing the facing sheets of lightweight honeycomb core boards with the use of analog printing technology and UV lamps is a challenge for the industry. The aim of this study was to determine the effect of selected varnishing parameters on coating resistance by experimentally testing 48 coating variants. It was found that the interactions between the following variables were crucial in achieving adequate resistance: lamp power, the amounts of varnish applied, and the number of layers. The highest scratch, impact, and abrasion resistance values were observed for samples with optimal curing provided by more layers and maximum curing with 90 W/cm lamps. Based on the pareto chart, a model was generated that predicted the optimal settings for the highest scratch resistance. Resistance to cold liquids made with a colorimeter increases with lamp power.
在未来几年,由于对轻质、耐用家具的需求不断增长,预计会有更多家具采用蜂窝板制造。高密度纤维板(HDF)此前在家具行业中用作箱式家具的后壁或抽屉部件,现已成为蜂窝芯板生产中常用的饰面材料。使用模拟印刷技术和紫外线灯对轻质蜂窝芯板的饰面板进行涂漆,对该行业来说是一项挑战。本研究的目的是通过对48种涂层变体进行实验测试,确定所选涂漆参数对涂层抗性的影响。研究发现,以下变量之间的相互作用对于实现足够的抗性至关重要:灯功率、涂漆量和层数。对于通过更多层数提供的最佳固化以及使用90W/cm灯进行最大固化的样品,观察到了最高的耐刮擦、耐冲击和耐磨抗性值。基于帕累托图,生成了一个预测最高耐刮擦性的最佳设置的模型。用色度计测量的对冷液体的抗性随灯功率增加。