Title :
Piezoelectric-stack pump for micro-reagents dispense
Author :
Kong Xiang-bing ; Chen Li-guo ; Shao Chao ; Liu De-li ; Qu Dong-sheng
Author_Institution :
Autom. Coll., Harbin Univ. of Sci. & Technol., Harbin, China
Abstract :
Microscale, fast, precise micro-reagents dispense is the key technology indispensable in life science, chemical experiments and other fields. A piezoelectric-stack pump prototype was developed to implement high-precision, microscale and automated reagents dispense. The structure, working process and assembly process of the piezoelectric-stack pump were studied. Experiments were conducted to investigate the impact of the input signal on the performance of the piezoelectric-stack pump and the relation-ship between the output flow rate and pressure, and the input power and frequency. Reagent pump was fabricated by installing nozzle on the prototype, and then the relationship between the output characteristics of the reagent pump and the volume of the micro-droplet was studied. The repeating precision of the output flow is 77.42μL-The volume and repeating precision for reagents dispense are 16.09μL and 0.29μL respectively when the diameter of the nozzle is 0.5 mm.
Keywords :
drops; microactuators; microfluidics; micropumps; piezoelectric actuators; assembly process; automated reagents dispense; chemical experiments; life science; microdroplet; microreagents dispenser; nozzle; output characteristics; piezoelectric-stack pump prototype; reagent pump; working process; Ceramics; Displacement measurement; Fluid flow measurement; Frequency measurement; Pumps; Radio spectrum management; Size measurement; micro-reagents dispense; piezoelectric actuation; piezoelectric-stack pump;
Conference_Titel :
Strategic Technology (IFOST), 2011 6th International Forum on
Conference_Location :
Harbin, Heilongjiang
Print_ISBN :
978-1-4577-0398-0
DOI :
10.1109/IFOST.2011.6021039