Facile microfabrication of three dimensional-patterned micromixers using additive manufacturing technology

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초록

This study investigates the manufacturing method of oblique patterns in microchannels and the effect of these patterns on mixing performance in microchannels. To fabricate three-dimensional (3D) and oblique patterns in microchannels, 3D printing and replica methods were utilized to mold patterns and microchannels, respectively. The angle and size of the patterns were controlled by the printing angle and resolution, respectively. The mixing efficiency was experimentally characterized, and the mixing principle was analyzed using computational fluid dynamics simulation. The analysis showed that the mixing channel cast from the mold printed with a printing angle of 30 degrees and resolution of 300 mu m exhibited the best mixing efficiency with a segregation index of approximately 0.05 at a Reynolds number of 5.4. This was because, as the patterns inside the microchannel were more oblique, "split" and "recombine" behaviors between two fluids were enhanced owing to the geometrical effect. This study supports the use of the 3D printing method to create unique patterns inside microchannels and improve the mixing performance of two laminar flows for various applications such as point-of-care diagnostics, lab-on-a-chip, and chemical synthesis.

키워드

MIXING PERFORMANCEREACTION SYSTEMMICROFLUIDICSFABRICATIONPOLYMERIZATIONEFFICIENCYBEHAVIORMIXERGLASS
제목
Facile microfabrication of three dimensional-patterned micromixers using additive manufacturing technology
저자
Koo, DoheonSo, Hongyun
DOI
10.1038/s41598-022-10356-z
발행일
2022-04
유형
Article
저널명
Scientific Reports
12
1
페이지
1 ~ 12

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