Micro-droplet jetting manufacture is a new 3D printing technology developed in recent years. Presently, this new technology mainly aims at ejecting a low-viscosity medium. Therefore, a device for ejecting high-viscosity molten liquid is designed by analyzing the injection principle of high-viscosity molten liquid. Initially, the cooling mechanism is designed to overcome the defect that the piezoelectric stacks cannot operate in high-temperature conditions. Thereafter, the mathematical model of the liquid velocity in the nozzle is derived, and the factors influencing injection are verified by Fluent. Subsequently, a prototype of the jet printer is fabricated, and the needle velocity is tested by the laser micrometer; the relationship between...
A rapid fabrication technique, for building microceramic parts, using a dropon-demand ceramic ink-je...
This chapter discusses the processes by which small drops of liquid are generated and delivered in i...
A design process based on multiphysics modeling and micro-electro-mechanical systems (MEMS) fabricat...
Micro-droplet jetting manufacture is a new 3D printing technology developed in recent years. Present...
Electrohydrodynamic jet (e-jet) printing has very promising applications due to its high printing re...
The common denominator of this thesis is the quest for processing a wider range of materials using i...
High-voltage electric field-driven jet deposition technology is a novel high resolution micro scale ...
With rapid growth of demand in microelectronic industry and biotechnology, traditional manufacturing...
Droplet generation process can directly affect process regulation and output performance of electroh...
The flow focusing principle has recently been shown to successfully generate micrometer viscoelastic...
The ability to print high-resolution (<10 μm) three-dimensional (3D) features is important in numero...
The performance of printed electronics strongly depends on printing techniques and printing resoluti...
Inkjet printing has been used as an Additive Manufacturing (AM) method to fabricate three-dimensiona...
The chip-level bare die direct liquid impingement jet cooling is regarded as a highly efficient cool...
The flow focusing principle has recently been shown to successfully generate micrometer viscoelastic...
A rapid fabrication technique, for building microceramic parts, using a dropon-demand ceramic ink-je...
This chapter discusses the processes by which small drops of liquid are generated and delivered in i...
A design process based on multiphysics modeling and micro-electro-mechanical systems (MEMS) fabricat...
Micro-droplet jetting manufacture is a new 3D printing technology developed in recent years. Present...
Electrohydrodynamic jet (e-jet) printing has very promising applications due to its high printing re...
The common denominator of this thesis is the quest for processing a wider range of materials using i...
High-voltage electric field-driven jet deposition technology is a novel high resolution micro scale ...
With rapid growth of demand in microelectronic industry and biotechnology, traditional manufacturing...
Droplet generation process can directly affect process regulation and output performance of electroh...
The flow focusing principle has recently been shown to successfully generate micrometer viscoelastic...
The ability to print high-resolution (<10 μm) three-dimensional (3D) features is important in numero...
The performance of printed electronics strongly depends on printing techniques and printing resoluti...
Inkjet printing has been used as an Additive Manufacturing (AM) method to fabricate three-dimensiona...
The chip-level bare die direct liquid impingement jet cooling is regarded as a highly efficient cool...
The flow focusing principle has recently been shown to successfully generate micrometer viscoelastic...
A rapid fabrication technique, for building microceramic parts, using a dropon-demand ceramic ink-je...
This chapter discusses the processes by which small drops of liquid are generated and delivered in i...
A design process based on multiphysics modeling and micro-electro-mechanical systems (MEMS) fabricat...