공리적 설계를 이용한 초미세 발포 공정 설계

  • 정대진 (연세대학교 대학원 기계공학과) ;
  • 차성윤 (연세대학교 기계전자공학부) ;
  • 윤재동 (연세대학교 대학원 기계공학과)
  • Jeong, Dae-Jin (Dept.of Mechanical Engineering, Graduate School of Yonsei University) ;
  • Cha, Sung-Woon (Dept.of Mechanical Electronics Engineering, Yonsei University) ;
  • Yoon, Jae-Dong (Dept.of Mechanical Engineering, Graduate School of Yonsei University)
  • 발행 : 2001.01.01

초록

There is a great demand for reducing the amount of material used in mass-produced plastics parts, for material cost constitutes up to 75% of the total production cost. Plastics do not easily decay which causes environmental problem. Furthermore, material reduction therefore decreases the amount of oil needed for the manufacture of plastics and thus help conserve this natural resource. Therefore, microcellular foamed plastics(MCPs) was developed at MIT to solve these problem alternation 1980's. Until now, however, microcellular foaming process not designed systematically because the key factors governing the process were not clear. The goal of this research is to obtain the optimal design of the microcellular plastics by using axiomatic approach.

키워드

참고문헌

  1. S. W. Cha, 'A Microcellular Foaming/Forming Process Performed at Ambient Temperature and a Super Microcellular Foaming Process,' M.I.T., pp. 12-15, 1994
  2. Nam P. Suh, 'The Principles of Design,' Oxford University PressFont, pp. 15-20, 1990
  3. 문용락, '공리적 접근을 이용한 설계평가 도구의 개발,' 석사 학위 논문, 연세대학교, pp. 5-22, 1999
  4. 윤재동, '가스의 용해량에 따른 고분자의 유리전이 온도 및 점도,' 석사 학위 논문, 연세대학교, pp. 9-21, 1998
  5. 정대진, 차성운, 윤재동, '질소 가스를 이용한 초미세 발포 고분자 재료의 무게변화,' 정밀공학회지 17권 9호 pp. 196-201, 2000