Bouchard Felix, Soldera Marcos, Baumann Robert, Lasagni Andrés Fabián
Institut für Fertigungstechnik, Technische Universität Dresden, George-Baehr-Str. 3c, 01069 Dresden, Germany.
PROBIEN-CONICET, Dto. de Electrotecnia, Universidad Nacional del Comahue, Buenos Aires 1400, Neuquén 8300, Argentina.
Materials (Basel). 2021 Apr 2;14(7):1756. doi: 10.3390/ma14071756.
Nowadays, the demand for surface functionalized plastics is constantly rising. To address this demand with an industry compatible solution, here a strategy is developed for producing hierarchical microstructures on polyethylene terephthalate (PET) by hot embossing using a stainless steel stamp. The master was structured using three laser-based processing steps. First, a nanosecond-Direct Laser Writing (DLW) system was used to pattern dimples with a depth of up to 8 µm. Next, the surface was smoothed by a remelting process with a high-speed laser scanning at low laser fluence. In the third step, Direct Laser Interference Patterning (DLIP) was utilized using four interfering sub-beams to texture a hole-like substructure with a spatial period of 3.1 µm and a depth up to 2 µm. The produced stamp was used to imprint PET foils under controlled temperature and pressure. Optical confocal microscopy and scanning electron microscopy imaging showed that the hierarchical textures could be accurately transferred to the polymer. Finally, the wettability of the single- and multi-scaled textured PET surfaces was characterized with a drop shape analyzer, revealing that the highest water contact angles were reached for the hierarchical patterns. Particularly, this angle was increased from 77° on the untreated PET up to 105° for a hierarchical structure processed with a DLW spot distance of 60 µm and with 10 pulses for the DLIP treatment.
如今,对表面功能化塑料的需求在不断增长。为了用一种与行业兼容的解决方案来满足这一需求,本文开发了一种策略,通过使用不锈钢模具热压印在聚对苯二甲酸乙二酯(PET)上制备分级微结构。母模通过三个基于激光的加工步骤进行结构化处理。首先,使用纳秒级直接激光写入(DLW)系统制作深度达8 µm的凹坑图案。接下来,通过在低激光能量密度下进行高速激光扫描的重熔工艺使表面光滑。在第三步中,利用直接激光干涉图案化(DLIP),使用四个干涉子光束制作出空间周期为3.1 µm、深度达2 µm的孔状子结构。所制备的模具用于在可控的温度和压力下压印PET薄膜。光学共聚焦显微镜和扫描电子显微镜成像表明,分级纹理能够准确地转移到聚合物上。最后,用滴形分析仪对单尺度和多尺度纹理化PET表面的润湿性进行了表征,结果表明分级图案的水接触角最大。特别是,对于用60 µm 的DLW光斑间距处理且DLIP处理使用10个脉冲的分级结构,该角度从未处理PET上的77°增加到了105°。