Inspired by geckos' adhesion, the effect of water membrane forming due to the environmental humidity, on the adhesion between a bio-inspired nano-film and a substrate is investigated first. The disjoining pressure is considered, which results in an enhancing adhesion between the nano-film and substrate. When the thickness of water membrane increases, water droplets will form and a repulsive capillary force between the nano-film and substrate is produced. The total adhesion force decreases with an increasing volume of water droplets. The two opposite results in the two different models are consistent well with two seemingly inconsistent experimental observations by Huber et al. (2005) [4] and Sun et al. (2005) [5], respectively, and may be s...
Inspired by the natural adhesives in the toe pads of arthropods and some other animals, we explore t...
Normal acrylic-based adhesives that stick to dry surfaces, do not stick to surfaces with a water fil...
Biologically inspired dry adhesion has recently become a research hot topic because of its practical...
Recent experiments have shown that gecko adhesion underwater depends significantly on surface wettab...
Inspired by the gecko's climbing ability, adhesion between an elastic nanofilm with finite length an...
Inspired by the reversible adhesion behaviors of geckos, the effects of pre-tension in a bio-inspire...
Inspired by biological attachment systems, we fabricated the honeycomb structural films with differe...
Inspired by gecko adhesion in humid environments, a modified Kendall's model is established in order...
Gecko adhesion has attracted considerable scientific and public attention over the past two decades....
A higher relative humidity leads to an increased sticking power of gecko feet to surfaces. The molec...
<div><p>Perhaps one of the most astounding characteristics of the gecko adhesive system is its versa...
Insects use hairy or smooth adhesive pads to stick to almost all known surfaces. Although studied fo...
ABSTRACT: Inspired by the natural adhesives in the toe pads of arthropods and some other animals, we...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Smooth adhesive pads are found among the arthropods, amphibians (particularly tree frogs), and in so...
Inspired by the natural adhesives in the toe pads of arthropods and some other animals, we explore t...
Normal acrylic-based adhesives that stick to dry surfaces, do not stick to surfaces with a water fil...
Biologically inspired dry adhesion has recently become a research hot topic because of its practical...
Recent experiments have shown that gecko adhesion underwater depends significantly on surface wettab...
Inspired by the gecko's climbing ability, adhesion between an elastic nanofilm with finite length an...
Inspired by the reversible adhesion behaviors of geckos, the effects of pre-tension in a bio-inspire...
Inspired by biological attachment systems, we fabricated the honeycomb structural films with differe...
Inspired by gecko adhesion in humid environments, a modified Kendall's model is established in order...
Gecko adhesion has attracted considerable scientific and public attention over the past two decades....
A higher relative humidity leads to an increased sticking power of gecko feet to surfaces. The molec...
<div><p>Perhaps one of the most astounding characteristics of the gecko adhesive system is its versa...
Insects use hairy or smooth adhesive pads to stick to almost all known surfaces. Although studied fo...
ABSTRACT: Inspired by the natural adhesives in the toe pads of arthropods and some other animals, we...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Smooth adhesive pads are found among the arthropods, amphibians (particularly tree frogs), and in so...
Inspired by the natural adhesives in the toe pads of arthropods and some other animals, we explore t...
Normal acrylic-based adhesives that stick to dry surfaces, do not stick to surfaces with a water fil...
Biologically inspired dry adhesion has recently become a research hot topic because of its practical...