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DENSITY DIFFERENCE-FLUID DIRECT METHOD USING MICROFLUIDIC DEVICE MANUFACTURED BY 3D PRINTER, AND PARALLEL PRODUCTION APPARATUS FOR DROPLETS OF VARIOUS SIZES USING SAME
DENSITY DIFFERENCE-FLUID DIRECT METHOD USING MICROFLUIDIC DEVICE MANUFACTURED BY 3D PRINTER, AND PARALLEL PRODUCTION APPARATUS FOR DROPLETS OF VARIOUS SIZES USING SAME
The present invention relates to a density difference-fluid direct method using a microfluidic device manufactured by a 3D printer, and a parallel production apparatus for droplets of various sizes using the same. The parallel production apparatus for droplets comprises a plurality of droplet generation units providing an accommodating space that provides a hydrophobic surface to create droplets using a non-mixed first fluid and second fluid supplied, and controlling the size of droplets generated by a flow rate ratio of the first fluid and the second fluid; and a first supply pipe and a second supply pipe that simultaneously supply the first fluid and the second fluid to the droplet generation units, respectively.;COPYRIGHT KIPO 2020
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