Hausberger Andreas, Pecora Marina, Favier Damien, Rossegger Elisabeth, Tockner Martin, Ules Thomas, Haselmann Matthias, Schlögl Sandra, Gauthier Christian
Polymer Competence Center Leoben GmbH, Sauraugasse 1, 8700 Leoben, Austria.
Institut Charles Sadron, Université de Strasbourg, CNRS, F-67000 Strasbourg, France.
Materials (Basel). 2023 Sep 29;16(19):6489. doi: 10.3390/ma16196489.
Structured surfaces, which are the basis of the lotus blossom effect, have great potential to serve/operate as functionalised surfaces, i.e., surfaces with specific and/or adjustable properties. In the present study, the aim is to use micro-structured elastomeric surfaces to specifically influence the friction and deformation behaviours on the basis of the shape and arrangement of the structures. Thiol-acrylate-based photopolymers patterned via nanoimprint lithography were investigated by using an in situ tribological measurement set-up. A clear influence of the different structures on the surface's friction behaviour could be shown, and, furthermore, this could be brought into relation with the real area of contact. This finding provides an important contribution to further development steps, namely, to give the structures switchable properties in order to enable the control of friction properties in a targeted manner.
具有莲花效应的结构化表面作为功能化表面(即具有特定和/或可调特性的表面)具有巨大潜力。在本研究中,目标是基于结构的形状和排列,利用微结构弹性体表面来特异性地影响摩擦和变形行为。通过纳米压印光刻图案化的硫醇 - 丙烯酸酯基光聚合物,使用原位摩擦学测量装置进行了研究。可以证明不同结构对表面摩擦行为有明显影响,此外,这可以与实际接触面积联系起来。这一发现为进一步的开发步骤做出了重要贡献,即赋予结构可切换特性,以便能够有针对性地控制摩擦特性。