- 3D 프린터를 이용한 마이크로 리액터 가공에 관한 연구
- ㆍ 저자명
- 최해운,윤성철,마재권,방대욱,Choi. Hae Woon,Yoon. Sung Chul,Ma. Jae Kwon,Bang. Dae Wook
- ㆍ 간행물명
- 한국생산제조시스템학회지
- ㆍ 권/호정보
- 2014년|23권 3호|pp.218-222 (5 pages)
- ㆍ 발행정보
- 한국생산제조시스템학회
- ㆍ 파일정보
- 정기간행물| PDF텍스트
- ㆍ 주제분야
- 기타
A 3D printer was used to fabricate a micro-TAS system for biomedical applications. A polymeric medical device fabrication based on a 3D printer can be performed at atmospheric conditions. A CAD- and CAM-based system is a flexible method to design medical components, and a 3D printer is a suitable device to perform this task. In this research, a 100-micron-wide fluidic channel was fabricated with a high-aspect ratio. A cross-sectional SEM image confirmed its possible usage in a micro-reactor using 3D printers. CNC-machined samples were compared to 3D printer-fabricated samples, and the advantages and disadvantages were discussed. Based on the SEM images, the surface roughness of the 3D printed reactor was not affected by wet or dry conditions due to its manufacturing principle. An aspect ratio of 5 to 1 was achievable with 100-${mu}$ m-wide fluid channels. No melting was found, and the shape of channels was straight enough to be used for micro reactors.