Self-assembly of components using liquid surface tension is an attractive alternative to traditional robotic pick-and-place as it offers high assembly accuracy for coarse initial part placement. One of the key requirements of this method is the containment of the liquid within a designated binding site. This paper looks to expand the applications of self-assembly and investigates the use of topographical structures applied to 3D printed micro components for self-assembly using liquid surface tension. An analysis of the effect of edge geometry on liquid contact angle was conducted. A range of binding sites were produced with varying edge geometries, 45-135°, and for a variety of site shapes and sizes, 0.4 - 1 mm in diameter, and 0.5 x 0.5 – ...
Part 1: Micro Assembly Processes and SystemsInternational audienceThe following approach of a fluidi...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
Droplet self-alignment is a microassembly process where the surface tension of liquid aligns micropa...
Self-assembly of components using liquid surface tension is an attractive alternative to traditional...
This thesis presents an improved understanding of how liquid surface tension controls component alig...
Mechanical assembly of systems and structures on the micro-scale can be inefficient as pthesiss of s...
The long lasting trend of miniaturization leads to increasing functionality but also to continuously...
Self Assembly is a promising alternative to conventional pick and place robotic assembly of micro co...
Surface tension-driven self-alignment is a passive and highly-accurate positioning mechanism that ca...
Surface tension-driven self-alignment is a passive and highly-accurate positioning mechanism that ca...
Fluid driven self-alignment is a low cost alternative to fast but relatively inaccurate robotic pick...
[[abstract]]The purpose of this research is to develop a self-alignment mechanism using surface tens...
Abstract—Because of the low dimensional power of its force scaling law, surface tension is appropria...
Abstract—Because of the low dimensional power of its force scaling law, surface tension is appropria...
[[abstract]]Conventional pick-and-place technology platform in handling microscale component assembl...
Part 1: Micro Assembly Processes and SystemsInternational audienceThe following approach of a fluidi...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
Droplet self-alignment is a microassembly process where the surface tension of liquid aligns micropa...
Self-assembly of components using liquid surface tension is an attractive alternative to traditional...
This thesis presents an improved understanding of how liquid surface tension controls component alig...
Mechanical assembly of systems and structures on the micro-scale can be inefficient as pthesiss of s...
The long lasting trend of miniaturization leads to increasing functionality but also to continuously...
Self Assembly is a promising alternative to conventional pick and place robotic assembly of micro co...
Surface tension-driven self-alignment is a passive and highly-accurate positioning mechanism that ca...
Surface tension-driven self-alignment is a passive and highly-accurate positioning mechanism that ca...
Fluid driven self-alignment is a low cost alternative to fast but relatively inaccurate robotic pick...
[[abstract]]The purpose of this research is to develop a self-alignment mechanism using surface tens...
Abstract—Because of the low dimensional power of its force scaling law, surface tension is appropria...
Abstract—Because of the low dimensional power of its force scaling law, surface tension is appropria...
[[abstract]]Conventional pick-and-place technology platform in handling microscale component assembl...
Part 1: Micro Assembly Processes and SystemsInternational audienceThe following approach of a fluidi...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
Droplet self-alignment is a microassembly process where the surface tension of liquid aligns micropa...