IEEE Transactions on Robotics · 2015 · 18 citations · 28 references
Pattern FormationEngineeringSoft RoboticsLiquid MeniscusMicrofabricationInterfacial PhenomenonSelf-assemblyMolecular Self-assemblyMechanical EngineeringCapillary GrippingMesoscopic ComponentsCapillarity PhenomenonBiomedical EngineeringSoft MatterMicrofluidicsHierarchical AssemblyLiquid Bridges
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 assembly substrate provides a roll-to-roll-compatible technology for high-resolution and high-throughput component assembly.
28
The Internet of Things: A survey
Luigi Atzori, Antonio Iera, Giacomo Morabito · Computer Networks · 2010 · 15.1K citations
Nonlinear dynamics and breakup of free-surface flows
Jens Eggers · Reviews of Modern Physics · 1997 · 1.8K citations
Rarefied Flow, Engineering, Physics +12
Technologies for Cofabricating MEMS and Electronics
Gary K. Fedder, Roger T. Howe, Tsu‐Jae King Liu et al. · Proceedings of the IEEE · 2008 · 246 citations
Engineering, Mechanical Engineering, Microelectromechanical Systems +17