Piccolo Leonardo, Sorgato Marco, Batal Afif, Dimov Stefan, Lucchetta Giovanni, Masato Davide
Department of Plastics Engineering, University of Massachusetts Lowell, Lowell, MA 01854, USA.
Department of Industrial Engineering, University of Padova, 35131 Padova, Italy.
Micromachines (Basel). 2020 Apr 20;11(4):429. doi: 10.3390/mi11040429.
Surface functionalization of plastic parts has been studied and developed for several applications. However, demand for the development of reliable and profitable manufacturing strategies is still high. Here we develop and characterize a new process chain for the versatile and cost-effective production of sub-micron textured plastic parts using laser ablation. The study includes the generation of different sub-micron structures on the surface of a mold using femtosecond laser ablation and vario-thermal micro-injection molding. The manufactured parts and their surfaces are characterized in consideration of polymer replication and wetting behavior. The results of the static contact angle measurements show that replicated Laser-Induced Periodic Surface Structures (LIPSSs) always increase the hydrophobicity of plastic parts. A maximum contact angle increase of 20% was found by optimizing the manufacturing thermal boundary conditions. The wetting behavior is linked to the transition from a Wenzel to Cassie-Baxter state, and is crucial in optimizing the injection molding cycle time.
塑料部件的表面功能化已针对多种应用进行了研究和开发。然而,对可靠且有利可图的制造策略的开发需求仍然很高。在此,我们开发并表征了一种新的工艺链,用于使用激光烧蚀以通用且经济高效的方式生产亚微米纹理化塑料部件。该研究包括使用飞秒激光烧蚀和变热微注塑成型在模具表面生成不同的亚微米结构。考虑到聚合物复制和润湿行为,对制造的部件及其表面进行了表征。静态接触角测量结果表明,复制的激光诱导周期性表面结构(LIPSSs)总是会增加塑料部件的疏水性。通过优化制造热边界条件,发现接触角最大增加了20%。润湿行为与从Wenzel状态到Cassie-Baxter状态的转变有关,并且在优化注塑成型周期时间方面至关重要。