• Title/Summary/Keyword: Concurrent Engineering Design

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

  • 정융호
    • Korean Journal of Computational Design and Engineering
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    • v.2 no.2
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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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A Study on Development Process of Automobile Based on Concurrent Engineering and Information Technology (정보기술과 동시공학 개념을 활용한 신차 개발 프로세스에 관한 연구)

  • 이우영;문무경
    • Proceedings of the Korea Society of Design Studies Conference
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    • 1999.05a
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    • pp.64-65
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    • 1999
  • 오늘날의 가혹한 제품개발 환경은 보다 경쟁력 있는 제품개발 프로세스를 요구하고 있다. 궁극적으로는 제품개발기간(PDT)을 단축하는 것이 주요과제인 이 새로운 제품개발방식은 컴퓨터상에 가상공간을 만들어 제품의 기획, 설계, 제조를 통합하는 기술로 지칭되고 있다.(중략)

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Information-based NPD Organization Design : A Case Study (정보기반의 신제품개발 조직설계 : 사례 연구)

  • 안효정;김영배
    • Korean Management Science Review
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    • v.16 no.2
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    • pp.13-32
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    • 1999
  • Concurrent Engineering is one of the information-based product development approach. Yet, the method of organizing the project team for the concurrent engineering is not clear. This study focuses on deriving a method to organize an information-based project team. The model consists of 4 layers : IT infrastructure, organization of the information-based project team, operation of the project team, an organization culture. Based on an analysis of new product development case, this study attempts to verify the model and to suggest more effective way of organization design and management for new product development.

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Procedures of Transform IDEF3 Model into CPM Precedence Network Model for Process Analysis (프로세스 분석을 위한 IDEF3 모델을 CPM Network 모델로 변환하기 위한 절차)

  • 강동진;김경표;이상용;정용식
    • Proceedings of the Korea Society for Industrial Systems Conference
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    • 1999.05a
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    • pp.135-144
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    • 1999
  • A major concern in Concurrent Engineering is the control and management of workload in a period of process. As a general rule, leveling the peak of workload in a certain period is difficult because concurrent processing is comprised of various processes, including overlapping, paralleling and looping. Therefore, workload management with resource constraints is so beneficial that effective methods to analyze design process This study presents a procedure to transform the IDEF3 process model into the precedence logic network model for more useful assessment of the process. This approach is expected to facilitate resolving resource constrained scheduling problems more systematically in Concurrent Engineering environment.

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Network-centric CAD

  • Lee, Jae-Yeol;Kim, Hyun;Lee, Joo-Haeng;Do, Nam-Chul;Kim, Hyung-Sun
    • Proceedings of the CALSEC Conference
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    • 2001.08a
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    • pp.615-624
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    • 2001
  • Internet technology opens up another domain for building future CAD/CAM environment. The environment will be global, network-centric, and spatially distributed. In this paper, we present a new approach to network-centric virtual prototyping (NetVP) in a distributed design environment. The presented approach combines the current virtual assembly modeling and analysis technique with distributed computing and communication technology fur supporting virtual prototyping activities over the network. This paper focuses on interoperability, shape representation, and geometric processing for distributed virtual prototyping. STEP standard and CORBA-based interfaces allow the bi-directional communication between the CAD model and virtual prototyping model, which makes it possible to solve the problems of interoperability, heterogeneity of platforms, and data sharing. STEP AP203 and AP214 are utilized as a means of transferring and sharing product models. In addition, Attributed Abstracted B-rep (AAB) is introduced as 3D shape abstraction for transparent and efficient transmission of 3D models and for the maintenance of naming consistency between CAD models and virtual prototyping models over the network.

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A Simulation Model for the Application of Concurrent Engineering to Design Phase in Construction (건설공사 설계단계에서의 동시공학 적용을 위한 시뮬레이션 모델)

  • Han, Jin-Taek;Lee, Jae-Seob
    • Korean Journal of Construction Engineering and Management
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    • v.10 no.3
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    • pp.102-110
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    • 2009
  • Although several research efforts have been directed to fast-tracking to reduce the total delivery time, few researches have been studied on concurrent engineering in construction projects. The focus of fast-tracking is primarily on overlapping independent activity pairs. In comparison, the focus of concurrent engineering is on overlapping dependent activity pairs. Dependent activities are much harder to overlap successfully. This paper presents a simulation-based Concurrent Engineering methodology to optimize the overall duration of a set of design activities in a project by modelling key factors that determine the duration of individual activities and overlap between dependent activities. This methodology involves determining how much to overlap activities, how to decide which activities to overlap and the corresponding cost and time tradeoffs using a discrete event model solution. This simulation model, therefore, can be used as a reference on decision-making to define optimum point between time and cost.

Accurate Assembly and Concurrent Design of Airframe Structures (항공기체구조의 정밀조립 및 동시설계 기술)

  • Park, Mun-Sik
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.24 no.4 s.175
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    • pp.811-823
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    • 2000
  • In design and manufacturing airframe structures which are composed of a lot of sub-assemblies and large complex profile shapes it is difficult to reduce so called hardware variations. Accordingly cost increasing factors for manufacturing airframe parts are much more than other machine parts because of the variability of fabricated details and assemlies. To improve cost and quality, accurate assembly methods and DPD techniques are proposed in this paper which are based upon using CAD/CAM techniques, the concept of KC's and the coordinated datum and index throughout the design, tooling, manufacturing and inspection. The proposed methods are applied to produce fuselage frame assemblies and related engineering aspects are described regarding the design of parts and tools in the context of concurrent digital definition. First articles and consequent mass production of frame assemblies shows a great improvement of the process capability ratio from 0.7 by the past processes to 1.0 by the proposed methods in addition to the cost reduction due to the less number of tools, reduced total assembly times and the space compaction needed by massive inventory. The need to achieve better Cpk, however, and future studies to be investigated will be addressed briefly.

Web based Collaborative Design System for Concurrent Ship Design (동시공학적 선박설계를 위한 웹 기반의 협업설계 시스템)

  • Lee, Kyung-Ho
    • Proceedings of the Korea Committee for Ocean Resources and Engineering Conference
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    • 2003.05a
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    • pp.10-16
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    • 2003
  • Under the concept of global economy, the enterprises are assigning design and production environments around the world in different areas. In shipbuilding companies, a serious problem of information exchange emerges as companies use traditional hardware and very distinct softwares appropriate to their field of expertise. To overcome the decreased productivity due to the interruption of information, the concept of simultaneous engineering and concurrent design becomes very significant. In this article, the concept oj collaborative design based on internet environments is described. Especially, the core technologies to achieve collaborative design environments among shipbuilding companies, ship owners, ship classification societies, model basin, and consulting companies are adopted.

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A Knowledge-based CAD System for product and Mold Design in Injection Molding (사출제품 및 금형의 통합적 설계지원을 위한 지식형 CAD 시스템)

  • Huh, Y.J.
    • Journal of the Korean Society for Precision Engineering
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    • v.12 no.10
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    • pp.32-39
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    • 1995
  • The design of injection molded polymeric parts has been done empirically, since it requires profound knowledge about the moldability and causal effects on the properties of the part, which are not available to designers through current CAD systems. An interactive computer-based design system is developed in order to realize the concept of rational design for the productivity and quality of mold making. The knowledge-based CAD system is constructed by adding the knowledge -base module for mold feature synthesis and appropriate CAE programs for mold design analysis in order to provide designers, at the initial design stage, with comprehensive process knowledge for feature synthesis, performance analysis and feature-based geometric modeling. A knowledge-based CAD system is a new tool which enables the concurrent design with integrated and balanced design decisions at the initial design stage of injection molding.

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