Recent experiments have shown that gecko adhesion underwater depends significantly on surface wettability. Theoretical models of a gecko seta adhering on different substrates are firstly established in order to disclose such an adhesion mechanism. The results show that the capillary force induced by nano-bubbles between gecko seta and the substrate is the mainly influencing factor. The capillary force exhibits an attractive feature between gecko setae and hydrophobic surfaces underwater. However, it is extremely weak or even repulsive on hydrophilic surfaces underwater. A self-similarly splitting model is further considered to simulate multiple gecko setae on substrates underwater. It is interesting to find that the total capillary force de...
Inspired by geckos' adhesion, the effect of water membrane forming due to the environmental humidity...
Geckos can climb steadily and quickly on different surfaces under various environmental conditions. ...
A higher relative humidity leads to an increased sticking power of gecko feet to surfaces. The molec...
Although we now have thousands of studies focused on the nano-, micro-, and whole-animal mechanics o...
<div><p>Perhaps one of the most astounding characteristics of the gecko adhesive system is its versa...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively ...
Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively ...
Strong, reversible underwater adhesion using gecko-inspired surfaces is achievable through the use o...
Strong, reversible underwater adhesion using gecko-inspired surfaces is achievable through the use o...
An array of micron-sized setal hairs offers geckos a unique ability to walk on vertical surfaces usi...
An array of micron-sized setal hairs offers geckos a unique ability to walk on vertical surfaces usi...
Gecko adhesion has attracted considerable scientific and public attention over the past two decades....
This thesis deals with the surface of a gecko in relation to its adhesion ability. Understanding the...
Inspired by geckos' adhesion, the effect of water membrane forming due to the environmental humidity...
Geckos can climb steadily and quickly on different surfaces under various environmental conditions. ...
A higher relative humidity leads to an increased sticking power of gecko feet to surfaces. The molec...
Although we now have thousands of studies focused on the nano-, micro-, and whole-animal mechanics o...
<div><p>Perhaps one of the most astounding characteristics of the gecko adhesive system is its versa...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively ...
Despite profound interest in the mechanics and performance of the gecko adhesive system, relatively ...
Strong, reversible underwater adhesion using gecko-inspired surfaces is achievable through the use o...
Strong, reversible underwater adhesion using gecko-inspired surfaces is achievable through the use o...
An array of micron-sized setal hairs offers geckos a unique ability to walk on vertical surfaces usi...
An array of micron-sized setal hairs offers geckos a unique ability to walk on vertical surfaces usi...
Gecko adhesion has attracted considerable scientific and public attention over the past two decades....
This thesis deals with the surface of a gecko in relation to its adhesion ability. Understanding the...
Inspired by geckos' adhesion, the effect of water membrane forming due to the environmental humidity...
Geckos can climb steadily and quickly on different surfaces under various environmental conditions. ...
A higher relative humidity leads to an increased sticking power of gecko feet to surfaces. The molec...