We present a pick-and-place approach driven by capillarity for highly precise and cost-effective assembly of mesoscopic components onto structured substrates. Based on competing liquid bridges, the technology seamlessly combines programmable capillary grasping, handling, and passive releasing with capillary self-alignment of components onto prepatterned assembly sites. The performance of the capillary gripper is illustrated by comparing the measured lifting capillary forces with those predicted by a hydrostatic model of the liquid meniscus. Two component release strategies, based on either axial or shear capillary forces, are discussed and experimentally validated. The release-and-assembly process developed for a continuously moving assembl...
Surface tension-driven self-alignment is a passive and highly-accurate positioning mechanism that ca...
This chapter reviews the capillary self-assembly (SA) of heterogeneous systems composed by milli- to...
This paper reports on the effective use of capillary self-alignment for low-cost and time-efficient ...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
Abstract: Fluidic self-assembly using capillary forces has shown great potential for the manufactur...
Self Assembly is a promising alternative to conventional pick and place robotic assembly of micro co...
peer reviewedWe propose a new 3D printed capillary gripper equipped with a textured surface for actu...
Within the currently rising trend of heterogeneous microsystem integration and packaging, capillary ...
Capillary self-assembly is rapidly emerging as an innovative technique to enhance, complement and ev...
[[abstract]]This paper summarizes our recent reports on self-assembly of flat micro components based...
This paper summarizes our recent reports on self-assembly of flat micro components based on two majo...
Developments in micro and nano technology have great potential in many applications. Two application...
[[abstract]]Conventional pick-and-place technology platform in handling microscale component assembl...
This paper introduces a new integration technology for cost-effective high-precision mechanical and ...
Surface tension-driven self-alignment is a passive and highly-accurate positioning mechanism that ca...
This chapter reviews the capillary self-assembly (SA) of heterogeneous systems composed by milli- to...
This paper reports on the effective use of capillary self-alignment for low-cost and time-efficient ...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
We present a pick-and-place approach driven by capillarity for highly precise and cost-effective ass...
Abstract: Fluidic self-assembly using capillary forces has shown great potential for the manufactur...
Self Assembly is a promising alternative to conventional pick and place robotic assembly of micro co...
peer reviewedWe propose a new 3D printed capillary gripper equipped with a textured surface for actu...
Within the currently rising trend of heterogeneous microsystem integration and packaging, capillary ...
Capillary self-assembly is rapidly emerging as an innovative technique to enhance, complement and ev...
[[abstract]]This paper summarizes our recent reports on self-assembly of flat micro components based...
This paper summarizes our recent reports on self-assembly of flat micro components based on two majo...
Developments in micro and nano technology have great potential in many applications. Two application...
[[abstract]]Conventional pick-and-place technology platform in handling microscale component assembl...
This paper introduces a new integration technology for cost-effective high-precision mechanical and ...
Surface tension-driven self-alignment is a passive and highly-accurate positioning mechanism that ca...
This chapter reviews the capillary self-assembly (SA) of heterogeneous systems composed by milli- to...
This paper reports on the effective use of capillary self-alignment for low-cost and time-efficient ...