Sliding-induced adhesion of stiff polymer microfibre arrays. II. Microscale behaviour

Author:

Schubert Bryan1,Lee Jongho2,Majidi Carmel1,Fearing Ronald S1

Affiliation:

1. Department of Electrical Engineering and Computer Sciences, University of CaliforniaBerkeley, CA 94720, USA

2. Department of Mechanical Engineering, University of CaliforniaBerkeley, CA 94720, USA

Abstract

The adhesive pads of geckos provide control of normal adhesive force by controlling the applied shear force. This frictional adhesion effect is one of the key principles used for rapid detachment in animals running up vertical surfaces. We developed polypropylene microfibre arrays composed of vertical, 0.3 μm radius fibres with elastic modulus of 1 GPa which show this effect for the first time using a stiff polymer. In the absence of shear forces, these fibres show minimal normal adhesion. However, sliding parallel to the substrate with a spherical probe produces a frictional adhesion effect which is not seen in the flat control. A cantilever model for the fibres and the spherical probe indicates a strong dependence on the initial fibre angle. A novel feature of the microfibre arrays is that adhesion improves with use. Repeated shearing of fibres temporarily increases maximum shear and pull-off forces.

Publisher

The Royal Society

Subject

Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biophysics,Biotechnology

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