Development of software for computing forming information using a component based approach

In shipbuilding industry, the manufacturing technology has advanced at an unprecedented pace for the last decade. As a result, many automatic systems for cutting, welding, etc. have been developed and employed in the manufacturing process and accordingly the productivity has been increased drastical...

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Main Authors: Kwang Hee Ko, Jung Seo Park, Jung Kim, Young Bum Kim, Jong Gye Shin
Format: Article
Language:English
Published: Elsevier 2009-12-01
Series:International Journal of Naval Architecture and Ocean Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2092678216303867
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author Kwang Hee Ko
Jung Seo Park
Jung Kim
Young Bum Kim
Jong Gye Shin
author_facet Kwang Hee Ko
Jung Seo Park
Jung Kim
Young Bum Kim
Jong Gye Shin
author_sort Kwang Hee Ko
collection DOAJ
description In shipbuilding industry, the manufacturing technology has advanced at an unprecedented pace for the last decade. As a result, many automatic systems for cutting, welding, etc. have been developed and employed in the manufacturing process and accordingly the productivity has been increased drastically. Despite such improvement in the manufacturing technology, however, development of an automatic system for fabricating a curved hull plate remains at the beginning stage since hardware and software for the automation of the curved hull fabrication process should be developed differently depending on the dimensions of plates, forming methods and manufacturing processes of each shipyard. To deal with this problem, it is necessary to create a “plug-in” framework, which can adopt various kinds of hardware and software to construct a full automatic fabrication system. In this paper, a framework for automatic fabrication of curved hull plates is proposed, which consists of four components and related software. In particular the software module for computing fabrication information is developed by using the ooCBD development methodology, which can interface with other hardware and software with minimum effort. Examples of the proposed framework applied to medium and large shipyards are presented.
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spelling doaj.art-714e04a249b04c3c9b27b14e0318a02f2022-12-22T01:59:37ZengElsevierInternational Journal of Naval Architecture and Ocean Engineering2092-67822009-12-0112788810.2478/IJNAOE-2013-0010Development of software for computing forming information using a component based approachKwang Hee Ko0Jung Seo Park1Jung Kim2Young Bum Kim3Jong Gye Shin4Dept. of Mechatronics, Gwangju Institute of Science and Technology, Gwangju, KoreaDept. of Naval Architecture and Ocean Engineering, Seoul National University, Seoul, KoreaDept. of Naval Architecture and Ocean Engineering, Seoul National University, Seoul, KoreaDept. of Naval Architecture and Ocean Engineering, Seoul National University, Seoul, KoreaResearch Institute of Marine Systems Engineering, Seoul National University, Seoul, KoreaIn shipbuilding industry, the manufacturing technology has advanced at an unprecedented pace for the last decade. As a result, many automatic systems for cutting, welding, etc. have been developed and employed in the manufacturing process and accordingly the productivity has been increased drastically. Despite such improvement in the manufacturing technology, however, development of an automatic system for fabricating a curved hull plate remains at the beginning stage since hardware and software for the automation of the curved hull fabrication process should be developed differently depending on the dimensions of plates, forming methods and manufacturing processes of each shipyard. To deal with this problem, it is necessary to create a “plug-in” framework, which can adopt various kinds of hardware and software to construct a full automatic fabrication system. In this paper, a framework for automatic fabrication of curved hull plates is proposed, which consists of four components and related software. In particular the software module for computing fabrication information is developed by using the ooCBD development methodology, which can interface with other hardware and software with minimum effort. Examples of the proposed framework applied to medium and large shipyards are presented.http://www.sciencedirect.com/science/article/pii/S2092678216303867Thermal formingooCBDForming informationSoftware architectureAutomationShip fabrication
spellingShingle Kwang Hee Ko
Jung Seo Park
Jung Kim
Young Bum Kim
Jong Gye Shin
Development of software for computing forming information using a component based approach
International Journal of Naval Architecture and Ocean Engineering
Thermal forming
ooCBD
Forming information
Software architecture
Automation
Ship fabrication
title Development of software for computing forming information using a component based approach
title_full Development of software for computing forming information using a component based approach
title_fullStr Development of software for computing forming information using a component based approach
title_full_unstemmed Development of software for computing forming information using a component based approach
title_short Development of software for computing forming information using a component based approach
title_sort development of software for computing forming information using a component based approach
topic Thermal forming
ooCBD
Forming information
Software architecture
Automation
Ship fabrication
url http://www.sciencedirect.com/science/article/pii/S2092678216303867
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