Department of Mechanical, Materials, and Aerospace Engineering, Illinois Institute of Technology, , Chicago, IL 60616, USA.
J R Soc Interface. 2014 Jan 22;11(93):20131089. doi: 10.1098/rsif.2013.1089. Print 2014 Apr 6.
This paper describes a novel, controllable adhesive that combines the benefits of electrostatic adhesives with gecko-like directional dry adhesives. When working in combination, the two technologies create a positive feedback cycle whose adhesion, depending on the surface type, is often greater than the sum of its parts. The directional dry adhesive brings the electrostatic adhesive closer to the surface, increasing its effect. Similarly, the electrostatic adhesion helps engage more of the directional dry adhesive fibrillar structures, particularly on rough surfaces. This paper presents the new hybrid adhesive's manufacturing process and compares its performance to three other adhesive technologies manufactured using a similar process: reinforced PDMS, electrostatic and directional dry adhesion. Tests were performed on a set of ceramic tiles with varying roughness to quantify its effect on shear adhesive force. The relative effectiveness of the hybrid adhesive increases as the surface roughness is increased. Experimental data are also presented for different substrate materials to demonstrate the enhanced performance achieved with the hybrid adhesive. Results show that the hybrid adhesive provides up to 5.1× greater adhesion than the electrostatic adhesive or directional dry adhesive technologies alone.
本文描述了一种新颖的可控黏合剂,它结合了静电黏合剂和壁虎型定向干式黏合剂的优点。当两种技术结合使用时,它们会形成一个正反馈循环,其黏附力(取决于表面类型)通常大于各部分的总和。定向干式黏合剂使静电黏合剂更接近表面,从而增强其效果。同样,静电黏附有助于更多地利用定向干式黏合剂的纤维状结构,特别是在粗糙表面上。本文介绍了新型混合黏合剂的制造工艺,并将其性能与使用类似工艺制造的另外三种黏合剂技术进行了比较:增强 PDMS、静电和定向干式黏附。在一组具有不同粗糙度的瓷砖上进行了测试,以量化其对剪切黏附力的影响。随着表面粗糙度的增加,混合黏合剂的相对有效性会增加。还提供了不同基底材料的实验数据,以证明混合黏合剂实现的增强性能。结果表明,混合黏合剂提供的黏附力比单独使用静电黏合剂或定向干式黏合剂技术高 5.1 倍。