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首页> 外文期刊>Microsystem technologies >Low-cost and fast fabrication of the ultrasonic embossing on polyethylene terephthalate (PET) films using laser processed molds
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Low-cost and fast fabrication of the ultrasonic embossing on polyethylene terephthalate (PET) films using laser processed molds

机译:使用激光加工模具对聚对苯二甲酸乙二醇酯(PET)薄膜进行超声波压花的低成本和快速制造

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摘要

This paper presented ultrasonic embossing using metal molds to replicate microstructures on polyethylene terephthalate (PET) films. The metal molds used in this study were fabricated by laser ablation processing technology. Aluminum 6061 was adopted to be mold material because of its better machinability and the optimized laser processing parameters were laser power of 10 W, scanning numbers of 20 times and scanning speed of 500 mm/s, respectively. Effects of the ultrasonic embossing parameters on replication quality, especially for replication depth were investigated. The results showed that the ultrasonic pressure F, welding time T-2, and holding time T-3 were significant factors of replication depth. Then optimized ultrasonic parameters obtained by orthogonal experiments were determined to be ultrasonic pressure of 400 kPa, welding time of 1 s and holding time of 4 s. The corresponding maximal depth and replication rate on PET films can reach 271.7 mu m and 99.74%, respectively. By using laser processed molds, the micro mixers and hydrophobic surface can be obtained successfully through ultrasonic embossing process. No leakage of blue ink in the micro mixers was observed, which meant high quality and high sealing property of the micro mixers. The instant contact angle of embossed PET films increased from 70.7 degrees to 100.4 degrees, which can be concluded that it was possible to change the wettability of surface and obtain the hydrophobic surface from hydrophilic surface by using laser processed molds and replicating microstructures after ultrasonic embossing. Laser ablation processing technology provides a novel way to fabricate molds and the result of this experiment offered a possibility of mass manufacture of polymer microstructure or micro device.
机译:本文用金属模具呈现超声波压花,以复制聚对苯二甲酸乙二醇酯(PET)膜上的微观结构。本研究中使用的金属模具通过激光烧蚀加工技术制造。采用铝6061是模具材料,因为其更好的可加工性,优化的激光加工参数是10W的激光功率,扫描数量为20次,扫描速度为500 mm / s。超声波压花参数对复制质量的影响,尤其是用于复制深度。结果表明,超声波压力F,焊接时间T-2和保持时间T-3是复制深度的重要因素。然后确定通过正交实验获得的优化超声波参数,以超声波压力为400kPa,焊接时间为1 s,保持时间为4 s。 PET薄膜上的相应最大深度和复制率分别达到271.7μm和99.74%。通过使用激光加工模具,可以通过超声波压花过程成功获得微混合器和疏水表面。没有观察到微混合器中的蓝色墨水泄漏,这意味着微混合器的高质量和高密封性能。压花PET薄膜的瞬发接触角从70.7度增加到100.4度,这可以得出结论,通过使用激光加工模具和超声波压花后复制微观结构,可以改变表面的润湿性并从亲水表面获得疏水表面。激光消融加工技术提供了一种制造模具的新方法,并且该实验结果提供了聚合物微观结构或微型装置的大规模制造的可能性。

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