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선체설계와 의장설계간의 정보인터페이스 기법 연구Establishment of Information Interface Technology between Hull and Outfitting Designs

Other Titles
Establishment of Information Interface Technology between Hull and Outfitting Designs
Authors
최영태서흥원이순섭
Issue Date
2013
Publisher
대한조선학회
Keywords
Pipe support pad∠ N/C; Pipe support installation drawing; Information interface; Hull design; Outfitting design; 파이프 서포트 패드&앵글; 절단가공; 파이프 서포트 설치도; 정보인터페이스; 선체설계; 의장설계
Citation
대한조선학회 논문집, v.50, no.6, pp 458 - 465
Pages
8
Indexed
KCI
Journal Title
대한조선학회 논문집
Volume
50
Number
6
Start Page
458
End Page
465
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/21102
ISSN
1225-1143
2287-7355
Abstract
Ship design engineering refers to the development and design of shipbuilding architectures in a drawing which reflects all relevant manufacturing processes. This paper provides analysis methods for model-information interfaces between hull structure design and outfitting design, and a technical application for manufacturing phases reflecting the pipe support pad and angle item automatically. The existing information procedure of pipe support pad and angle system processes information using drawing without model specification. Outfitting design team directly distributes drawings to the shop floor then manual-based marking and installation work are conducted refer to the distributed drawings. As a result, this process has become time consuming and causes problems in the productivity and quality improvement due to the rework caused by omitted or incorrect marking. The pipe support pad and angle marking is a method that automatically updates model information to hull structure design using sets of data that analyse the generated model in outfitting design processes. Therefore, this approach provides an efficient solution through design references without manual activities such as a reflection of hull structure design, cutting process, numerical control work, and dimension measurement and marking. The conversion of a method from the existing procedure based on manual marking to the reflective and automatic approach would have enabled to proceed installation work without manual activities for the measurement. Therefore, this research study proposes an efficient approach using pre-data analysis of model information interfaces between design and manufacturing phases to improve productivity during construction for shipbuilding.
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해양과학대학 (조선해양공학과)
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