Yu Dan, Beckelmann Dirk, Opsölder Michael, Schäfer Bruno, Moh Karsten, Hensel René, de Oliveira Peter William, Arzt Eduard
INM-Leibniz Institute for New Materials, Campus D2 2, 66123 Saarbrücken, Germany.
Department of Materials Science and Engineering, Saarland University, 66123 Saarbrücken, Germany.
Materials (Basel). 2018 Dec 29;12(1):97. doi: 10.3390/ma12010097.
For the next generation of handling systems, reversible adhesion enabled by micropatterned dry adhesives exhibits high potential. The versatility of polymeric micropatterns in handling objects made from various materials has been demonstrated by several groups. However, specimens reported in most studies have been restricted to the laboratory scale. Upscaling the size and quantity of micropatterned adhesives is the next step to enable successful technology transfer. Towards this aim, we introduce a continuous roll-to-roll replication process for fabrication of high-performance, mushroom-shaped micropatterned dry adhesives. The micropatterns were made from UV-curable polyurethane acrylates. To ensure the integrity of the complex structure during the fabrication process, flexible templates were used. The compression between the template and the wet prepolymer coating was investigated to optimize replication results without structural failures, and hence, to improve adhesion. As a result, we obtained micropatterned adhesive tapes, 10 cm in width and several meters in length, with adhesion strength about 250 kPa to glass, suitable for a wide range of applications.
对于下一代处理系统而言,由微图案化干粘合剂实现的可逆粘附展现出了巨大潜力。多个研究团队已证明了聚合物微图案在处理由各种材料制成的物体方面的多功能性。然而,大多数研究中所报道的样本都局限于实验室规模。扩大微图案化粘合剂的尺寸和数量是实现成功技术转移的下一步。为实现这一目标,我们引入了一种连续的卷对卷复制工艺,用于制造高性能的蘑菇形微图案化干粘合剂。这些微图案由可紫外光固化的聚氨酯丙烯酸酯制成。为确保在制造过程中复杂结构的完整性,使用了柔性模板。研究了模板与湿预聚物涂层之间的压缩情况,以优化复制结果且不出现结构故障,从而提高粘附力。结果,我们获得了宽度为10厘米、长度为数米的微图案胶带,其对玻璃的粘附强度约为250千帕,适用于广泛的应用。