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콘텐츠 본문

논문 국내 국내전문학술지(KCI급) 편집 설계 방법을 이용한 고체 추진제 형상 설계 자동화 프로그램 개발

  • 학술지 구분 국내전문학술지(KCI급)
  • 게재년월 2008-10
  • 저자명 김보현,이강수공동(교신),김성환,오석진,권혁선,양준서,이도형
  • 학술지명 한국CAD/CAM학회 논문집
  • 발행처명 한국CAD/CAM학회
  • 발행국가 국내
  • 논문언어 한국어

논문 초록 (Abstract)

We developed a design automation system to reduce the lead time and help engineers in designing a solid fuel, or a grain, for rocket missiles. First, we analyzed design activities and shapes of a grain, which resulted in the standard of design process and shape. We decided development process which consisted of two typical activities such as constructing master library and implementing design system. We constructed some master models for typical external shapes and core shapes of grains which were used in modeling the shape of a designing grain. Also we implemented a design automation program to use the master models according to the pre-defined design process. It can calculate some design parameters such as mass, mass center, volume and combustion area that are used in analyzing a proposed grain. Finally, we could reduce the design time dramatically and increase design quality by automating many routine and difficult works. We developed a design automation system to reduce the lead time and help engineers in designing a solid fuel, or a grain, for rocket missiles. First, we analyzed design activities and shapes of a grain, which resulted in the standard of design process and shape. We decided development process which consisted of two typical activities such as constructing master library and implementing design system. We constructed some master models for typical external shapes and core shapes of grains which were used in modeling the shape of a designing grain. Also we implemented a design automation program to use the master models according to the pre-defined design process. It can calculate some design parameters such as mass, mass center, volume and combustion area that are used in analyzing a proposed grain. Finally, we could reduce the design time dramatically and increase design quality by automating many routine and difficult works.