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Nano-Particle Deposition System (NPDS): Low Energy Solvent-free Dry Spray Process for Direct Patterning of Metals and Ceramics at Room Temperature
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  • Nano-Particle Deposition System (NPDS): Low Energy Solvent-free Dry Spray Process for Direct Patterning of Metals and Ceramics at Room Temperature
  • Nano-Particle Deposition System (NPDS): Low Energy Solvent-free Dry Spray Process for Direct Patterning of Metals and Ceramics at Room Temperature
저자명
Chun. Doo-Man,Choi. Jung-Oh,Lee. Caroline Sun-Yong,Kanno. Isaku,Kotera. Hidetoshi,Ahn. Sung-Hoon
간행물명
International journal of precision engineering and manufacturing
권/호정보
2012년|13권 7호|pp.1107-1112 (6 pages)
발행정보
한국정밀공학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

With increasing concerns of environmental issues in manufacturing process, energy efficient and waste free manufacturing processes have been widely studied. In the field of nano/micro manufacturing, many research results of direct writing processes such as ink jet printing, gravure printing, and rapid prototyping processes have been reported to remove waste-producing conventional lift-off process for patterning. In addition, the use of toxic solvents such as acetone, toluene, xylene and so on has been decreased. At the same time, energy efficiency becomes one of environmental issues in manufacturing process. In this research, Nano particle deposition system (NPDS), a dry spray deposition process for fabrication of meta and ceramic direct patterning at room temperature, was introduced according to the environmental aspects. In previous studies, NPDS has shown the feasibility of the depositions of metals such as Sn and Ni, and the depositions of ceramics such as $Al_2O_3$, and $TiO_2$ by spraying powders under low vacuum condition. The advantages of NPDS are 1) solvent free dry deposition process, 2) relatively low energy consumption with room temperature and low vacuum process condition, and 3) direct patterning process. The energy consumption in NPDS was briefly compared with similar processes including aerosol deposition and cold spray. The direct patterning results with $200{mu}m$ width line pattern using micro-nozzle were fabricated without any post-processes. These results confirmed NPDS can become a solvent-free energy efficient direct patterning process for metals and ceramics.