• 제목/요약/키워드: engineering BOM

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차세대 전동차 BOM구성 방안연구 (A Study of the organization BOM for the next generation train system)

  • 박수중;김영규;이성권;이한민
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 추계학술대회 논문집
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    • pp.1999-2004
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    • 2008
  • This study is about to constructing BOM for managing and integrating information, which is drawing, technical data, attribution, design, ordering, cost, weight, process, service, etc. based on train's system, elements, substructure, assembly, components, parts during whole train's lifetime of the next generation. The BOM is the mostly basic structure information as hierarchical data what are parts consisted specific products. The BOM was utilized as essential elements for collectively managing through informing all of the business activity from ordering to supplying. The BOM in railroad is consist of two parts. One is Engineering BOM for design, the other is Production BOM for production, which are utilized in development calculating the quantity of materials. Also the Maintenance BOM is applied to suppling parts and managing malfunction in railroad corporation like the Seoul Metro. There are many kind of BOMs, because of the special character for each step. Therefore We have need to develop BOM which is able to integrate drawing, technical data for helping good circulation between RAMS applied maintenance using database and helpful know-how for development and production. Also the BOM of the next generation must be consisted regard to whole life-cycle.

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도시철도 전동차의 유지보수 정보화를 위한 컴포넌트 기반의 BOM 관리시스템 개발에 관한 연구 (A Study on Implementation of a BOM Management System Using Component Technique for Maintenance System of Urban Transit)

  • 이호용;배철호;김규희;서명원
    • 대한기계학회논문집A
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    • 제29권1호
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    • pp.124-131
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    • 2005
  • BOM(Bill of Materials) is a list or description of raw materials, parts and assemblies that define a product. Although it is very important for maintenance information system of urban transit, it has problems that the size of database, inaccuracy and the flexibility which is measured as the number of updating records in accordance with added new product or engineering change. To solve these, we divide BOM to a master BOM and various function BOM constructed from the master BOM. That is the component based BOM management system, which is mutually independent and integrated efficiently using component technology. Consequently, after defining the component based master BOM, it is easy to manage the data structure, even restruct, in case there is a need for change of environment or data.

배관 제작, 설치 ISO 도면 및 BOM 정보 자동 생성 시스템 개발 (Development of Automatic Pipe ISO-Drawing and BOM Generation System)

  • 우일국;김신형;허철은;조용남;구자민;김대진
    • 대한조선학회 특별논문집
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    • 대한조선학회 2005년도 특별논문집
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    • pp.127-133
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    • 2005
  • DSME has successfully developed the unified CAD system (DACOS) for the commercial ship based on its design know-how accumulated for several years. Currently, DSME is expanding the unified CAD system to plant and special ship design. In this paper, the development of pipe design, especially, isometric drawing and BOM(Bill of Material) generation will be introduced isometric drawing and BOM generation are major activities of pipe design in shipbuilding. The drawing is used for pipe construction and installation while the BOM is used for purchasing and manufacturing pipe line. These activities are time-consuming and tedious jobs done by designers because the drawing should be generated as a non-scaled symbolized drawing that can be easily understood and the BOM information should be extracted without mistake. Therefore, we implemented automatic isometric drawing and 80M generation system for pipe design. In this paper, the developed system and the used technology will as well be introduced and a design output in a plant project as an applied example will be illustrated.

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이 기종 조선 PLM 시스템 간 BOM Data 교환을 위한 조선 온톨로지 Framework 구축 (Building and Applying Shipbuilding Ontology for BOM Data Interoperability in Heterogeneous Shipbuilding PLM Systems)

  • 김대석;이경호;이정민;이광;김진호
    • 한국CDE학회논문집
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    • 제16권3호
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    • pp.197-206
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    • 2011
  • Shipbuilding is a complex industry which contains a lot of knowledge, technology, and utilities. Hence, the necessity of the PLM (Product Life-cycle Management) system which manages life-cycle information of marine product has been increased. So, many studies related to shipbuilding PLM have been preceded, and there are some cases to be built. To implement collaboration and concurrent engineering of ship designing and manufacturing, interoperability of product data in heterogeneous system is required. Also, sharing and reusing knowledge are important for innovation of business process and productivity of enterprises. Even though many studies related interoperability of product data are going on in varies domain, the application to shipbuilding is deficient. This paper proposes a methodology for management and interconnection of BOM data based on ontology in heterogeneous PLM system of shipbuilding. Using Prot$\'{e}$g$\'{e}$-OWL, we built simple domain ontology of shipbuilding industry, and then, we integrated product information of shipbuilding BOM which is represented with different ontologies. We verified possibility of integration of shipbuilding BOM in heterogeneous PLM, using ontology.

EDMS에 의한 CAD로부터 BOM자동작성

  • 신수현;이승구;송병민
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2001년도 추계학술대회 논문집
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    • pp.306-310
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    • 2001
  • Engineering Database Management System은 제품개발시 사용빈도가 높은 도면과 BOM 데이터의 흐름을 컴퓨터에 의해 체계화/자동화시키기 위한 시스템이다. 이 시스템은 설계 구상단계부터 시작품 제작까지 각종공정에서 필요한 제품 및 부품들의 정보를 Text와 그래픽 형태로 제공하며, CAD 데이터를 이용한 BOM의 자동작성, 소요부품들의 구매의뢰, 시제품 제작, 양산이관 업무 등이 통합화된 설계 데이타베이스를 통해 종합 관리되는 설계용 도구이다.

수주생산 환경에서의 CIM 시스템을 위한 BOM과 라우팅의 구조화 -조선산업 사례 중심- (Structuring of BOM and Routings for CIM System In Make to Order Environments -Application of CIM System for Ship Production-)

  • 황성룡;김재균
    • 산업공학
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    • 제15권1호
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    • pp.26-39
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    • 2002
  • Two key data areas of the integrated production database in computer-integrated manufacturing (CIM) systems are the product structure in the forms of bills of material(BOM) and the process structure in the forms of routings. The great majority of existing information systems regard the BOM and routing as two separate data entities, possibly with some degree of cross-referencing. This paper proposes new information structure called the bills of material and routings(BMR) that logically integrates the BOM and routings for the CIM systems in ship production. The characteristics of ship production are described as: 1) make-to-order production type, 2) combined manufacturing principles (workshop production and construction site production), 3) significant overlapping of design, planning and manufacturing, 4) very long order throughput time, 5) complex product structure and production process. The proposed BMR systematically manages ail parts and operations data needed ship production considering characteristics of ship production. Also, the BMR situated on the integrated production database more efficiently supports interface between engineering and production functions, and integrates a wide variety of functions within production such as production planning, process planning, operation scheduling, material planning, costing etc., and simplifies information flow between sub-systems in CIM systems.

PDM 환경에서 통합BOM을 사용한 제품원가추정 (Product Cost Estimation using Integrated BOM in PDM)

  • 백종건;임석철
    • 산업경영시스템학회지
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    • 제22권50호
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    • pp.231-241
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    • 1999
  • Recent market competition forces the price to be determined in the design stage so that the design would meet the target price of the product. However, most commercial PDM(Product Data Management) systems currently in use lack such a cost estimation function. In this paper, we propose detailed structure and functions of a new approach to estimate the cost of new products using integrated BOM in PDM. Such system will reduce the total life cycle cost of the products to be designed.

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부품수가 많은 조립체 설계를 위한 동시공학의 구현: Part(I)- BOM에 따른 조립체 중심적 모델링 방법론- (Implementation of Concurrent Engineering for Large Assembly Design:Part(I)- Assembly-centric Modeling Methodology as BOM Structrue-)

  • 정융호
    • 한국CDE학회논문집
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    • 제2권2호
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    • pp.93-102
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    • 1997
  • Most design changes are due to interferences and fit-up as parts are assembled if such a large product as an automobile or an aircraft is developed by many concurrent engineers. In this part (1) of the thesis, the assembly-centric modeling methodology with CAD systems is proposed in order to reduce the design changes. Unlike part-centric modeling method, a part is modeled with its own coordinate system which is used in downstream process as machining and measuring. The part coordinates initially have the same orientation as its assembly which is predefined in BOM (Bill of Material). Then, the corrdinates origin of the part is moved to its location to be assembled from that of its assembly coordinate system. To implement this methodology, the position data of the part w.r.t. its assembly are stored in a database to build the same hierarchical assembling structure as BOM structure. This modeling approach has the advantage of reflecting asembling sequence, because the process of positioning parts is similar to that of real assembling. And with the method, a designer can easily adjust all of the part positions of an assembly to resolve interferences if he modifies just the coordinates origin of the assembly, which results in moving included parts and assemblies together.

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