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건축설계 시각화 모형을 위한 3D 프린팅 제작 특성 비교
Comparison of 3D printing characteristics for Visualized Architectural Model

  • 간행물
    대한건축학회연합논문집 KCI 등재 바로가기
  • 권호(발행년)
    제23권 제2호 통권 102호 (2021.04) 바로가기
  • 페이지
    pp.123-129
  • 저자
    최여진
  • 언어
    한국어(KOR)
  • URL
    https://www.earticle.net/Article/A393756

원문정보

초록

영어
In case 3D printing is used, even informal architecture model can be manufactured repeatedly with dimension accuracy. In this study, 3 architectural models with various design elements were manufactured by 5 types of well-used 3D printing processes and the manufacturing speed and cost were compared. The manufacturing speed was found that the MJF process in which powder is combined with agents and then hardened by infrared heat, was the fastest, and the FDM process in which the material is scanned with a mechanical linear motor was about 7 times slower than the MJF method. The SLA, FDM, and PJP processes require manufacturing cost in proportion to the number of manufactured models on a platform, whereas the SLS and MJF processes increase the cost when the number of manufactured parts on a platform is small. The total manufacturing cost of the FDM process, which has low material cost, was the lowest, and the SLS process was the highest for one model and the PJP process was the highest for multiple models on a platform. These results give architect the basic guideline to select the most effective 3D printing process when making architectural design models.

목차

Abstract
1. 서론
1.1 연구배경 및 목적
2. 선행연구 고찰
3. 다양한 3D 프린팅 방식과 그 특성
3.1 사용 재료에 따른 분류와 특성
3.2 3D 프린팅 방식의 종류와 특성
4. 건축모형 제작을 통한 3D 프린팅 방식의 특성비교
4.1 건축물 모델의 선정
4.2 3D 프린팅 방식 선정 및 제작 조건
4.3 제작소요시간(제작속도) 비교
4.4 제작비용 비교
5. 결론
REFERENCES

저자

  • 최여진 [ Choi, Yeo-Jin | 대구가톨릭대학교 건축학과 부교수 ] Corresponding Author

참고문헌

자료제공 : 네이버학술정보

    간행물 정보

    • 간행물
      대한건축학회연합논문집 [Journal of the Regional Association of Architectural Institute of Korea]
    • 간기
      격월간
    • pISSN
      1229-5752
    • 수록기간
      1999~2026
    • 등재여부
      KCI 등재
    • 십진분류
      KDC 540 DDC 690