We studied experimentally and theoretically the effect of different tilt angles on the adhesion of mushroom-shaped adhesive microstructures. The marginal measured influence of tilting on pull-off forces is quantitatively well confirmed by numerical and theoretical calculations and was shown to be a direct consequence of an optimized stress distribution. In addition, the presence of a joint-like narrowing under the contact elements, as found in some biological attachment systems, was shown to further contribute to the tilt-tolerance. The results obtained allow us to explain the advantage of the widely observed mushroom-shaped contact geometry in nature for long-term and permanent adhesion
We analyzed the contact mechanisms of bioinspired microfibrillar adhesives using in situ scanning el...
Recent theoretical and experimental studies have shown that mushroom shaped micro-pillars exhibit st...
Very recently, both experimental and theoretical investigations have shown that micro-structured sur...
We studied experimentally and theoretically the effect of different tilt angles on the adhesion of m...
This book deals with the adhesion, friction and contact mechanics of living organisms. Further, it p...
Very recently, both experimental and theoretical investigations have shown that micro-structured sur...
The goal of our study is to better understand the design parameters of bioinspired dry adhesives ins...
AbstractBio-inspired adhesion of micropatterned surfaces due to intermolecular interactions has attr...
Bio-inspired adhesion of micropatterned surfaces due to intermolecular interactions has attracted mu...
The superlative adhesive properties of some biological attachment systems, such as those of geckos, ...
AbstractThis letter reviews the adhesive and frictional properties of the first mushroom-shaped adhe...
Enhanced dry adhesion of micropatterned polymeric surfaces has been frequently demonstrated. Among t...
To date, a handful of different gecko-like adhesives inspired by spatula-shaped attachment hairs hav...
The contact geometry of microstructured adhesive surfaces is of high relevance for adhesion enhancem...
The adhesive systems of climbing animals have served as inspiration for a new class of temporary adh...
We analyzed the contact mechanisms of bioinspired microfibrillar adhesives using in situ scanning el...
Recent theoretical and experimental studies have shown that mushroom shaped micro-pillars exhibit st...
Very recently, both experimental and theoretical investigations have shown that micro-structured sur...
We studied experimentally and theoretically the effect of different tilt angles on the adhesion of m...
This book deals with the adhesion, friction and contact mechanics of living organisms. Further, it p...
Very recently, both experimental and theoretical investigations have shown that micro-structured sur...
The goal of our study is to better understand the design parameters of bioinspired dry adhesives ins...
AbstractBio-inspired adhesion of micropatterned surfaces due to intermolecular interactions has attr...
Bio-inspired adhesion of micropatterned surfaces due to intermolecular interactions has attracted mu...
The superlative adhesive properties of some biological attachment systems, such as those of geckos, ...
AbstractThis letter reviews the adhesive and frictional properties of the first mushroom-shaped adhe...
Enhanced dry adhesion of micropatterned polymeric surfaces has been frequently demonstrated. Among t...
To date, a handful of different gecko-like adhesives inspired by spatula-shaped attachment hairs hav...
The contact geometry of microstructured adhesive surfaces is of high relevance for adhesion enhancem...
The adhesive systems of climbing animals have served as inspiration for a new class of temporary adh...
We analyzed the contact mechanisms of bioinspired microfibrillar adhesives using in situ scanning el...
Recent theoretical and experimental studies have shown that mushroom shaped micro-pillars exhibit st...
Very recently, both experimental and theoretical investigations have shown that micro-structured sur...