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3D Printed Fluidic Oscillator Circuits for Autonomous Flow Driving and Switching
會議論文集

3D Printed Fluidic Oscillator Circuits for Autonomous Flow Driving and Switching

Liang-Yen Liu, Cheng-Hao Sun, Cheng-Lun Shih 和 Yu-Chuan Su
International Solid-State Sensors, Actuators and Microsystems Conference (Online), 頁碼.1192-1195
25/06/2023

摘要

3D Printing Digital Microfluidics Fabrication Fluidic Resistors Oscillator Circuit Osmotic Pump Pressure Sensitive Switch Pumps Switches Three-dimensional displays Capacitors Control Systems Resistors
We have successfully demonstrated fluidic oscillator circuits that can spontaneously generate periodic flow outputs. The Pearson-Anson oscillator circuits are built from osmotic pumps, fluidic resistors, capacitors, and diaphragm switches, which are pressure controlled and hysteretic. 3D fabrication schemes utilizing DLP based projection stereo-lithography are used to print and integrate (1) semi-permeable structures and osmotic pumps with high water flow rates, (2) pre-strained elastic diaphragms and pressure controlled switches with desired threshold and hysteresis, and (3) 3D fluidic resistors and capacitors. In addition to osmotic pump, syringe pump can also serve as the sole driving source in the fluidic circuit to generate oscillatory flow of either gas or liquid.

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