Gecko and many insects have evolved specialized adhesive tissues with hierarchical structures that allow them to maneuver on vertical walls and ceilings. The adhesion mechanisms of gecko must be robust enough to function on unknown rough surfaces and easily releasable upon animal movement. In this chapter, we review the robust and releasable adhesion devices used by the gecko. These topics are presented from the point of view of contact mechanics and fracture mechanics. Findings provide a theoretical foundation to understand adhesion mechanisms in biology and also suggest possible strategies to develop novel adhesive materials for engineering applications.Department of Mechanical Engineerin
One of the central controversies regarding the evolution of adhesion concerns how adhesive force sca...
Geckos can freely climb on walls and ceilings against their body weight at speed of over 1ms-1. Swit...
Abstract Geckos’ ability to move on steep surfaces depends on their excellent adhesive structure, ti...
Geckos possess a superlative climbing adaptation in the form of hierarchical arrays of adhesive nano...
Gecko has remarkable ability to control its adhesion and friction during running to realize a swift ...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
Graduation date: 2015Simulation models were developed to explore the reversible nature of gecko dry\...
The study of the adhesion of millions of setae on the toes of geckos has been advanced in recent yea...
This is the publisher’s final pdf. The published article is copyrighted by the American Institute of...
Geckos possess a remarkable ability to run rapidly on both walls and ceilings and in recent years th...
Geckos possess a remarkable ability to run rapidly on both walls and ceilings and in recent years th...
<p>Gecko feet stick to almost anything, in almost any condition (including underwater and in space),...
Abstract In this study, the adhesion‐detachment behaviour of a gecko‐inspired adhesive pad was inves...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
One of the central controversies regarding the evolution of adhesion concerns how adhesive force sca...
Geckos can freely climb on walls and ceilings against their body weight at speed of over 1ms-1. Swit...
Abstract Geckos’ ability to move on steep surfaces depends on their excellent adhesive structure, ti...
Geckos possess a superlative climbing adaptation in the form of hierarchical arrays of adhesive nano...
Gecko has remarkable ability to control its adhesion and friction during running to realize a swift ...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
SYNOPSIS. The extraordinary adhesive capabilities of geckos have challenged explanation for millenni...
Graduation date: 2015Simulation models were developed to explore the reversible nature of gecko dry\...
The study of the adhesion of millions of setae on the toes of geckos has been advanced in recent yea...
This is the publisher’s final pdf. The published article is copyrighted by the American Institute of...
Geckos possess a remarkable ability to run rapidly on both walls and ceilings and in recent years th...
Geckos possess a remarkable ability to run rapidly on both walls and ceilings and in recent years th...
<p>Gecko feet stick to almost anything, in almost any condition (including underwater and in space),...
Abstract In this study, the adhesion‐detachment behaviour of a gecko‐inspired adhesive pad was inves...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
One of the central controversies regarding the evolution of adhesion concerns how adhesive force sca...
Geckos can freely climb on walls and ceilings against their body weight at speed of over 1ms-1. Swit...
Abstract Geckos’ ability to move on steep surfaces depends on their excellent adhesive structure, ti...