• Title/Summary/Keyword: CAD standard

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A Study on the Standard of CAD Drawing in the Water Resources Parts to Support Construction CALS/EC (건설CALS/EC 지원을 위한 수자원 분야 전자도면 표준체계에 관한 연구)

  • Kang, Young Mi;Kang, Joon Mook
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.4D
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    • pp.553-560
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    • 2008
  • As it was developed to korea standard of the CAD Drawing in Construction CALS/EC for the productivity Improvement in Construction Industry and efficiency rising of construction management. it is high time to design the standard system in water resources. The purpose of this study is to establish the strategies for standard system of drawing information in water Resources parts for construction CALS/EC. This study is to analyse the existing construction drawing standards including CMS, CMMS, drawing guideline of a water Resources public institution, ISO, US National CAD Standard, Japanese Standard. As a result of the analysis, this study proposes the prime structure of the water Resources drawing information standard to support construction CALS/EC. For the establishment of standard system in real practice, this study establishes the numbering system to joint the current standard system for a water Resources order institution and to keep construction CALS/EC. In conclusion, the standard system of drawing information is proposed as a fundamental frame to water Resources parts of construction CALS/EC.

Development of a Dedicated CAD System for Welding Jigs for Automotive Body Assembly (차체 조립용 용접 지그 설계 전용 CAD시스템 개발)

  • 조병철;이상헌;김형준;우윤환;이강수
    • Korean Journal of Computational Design and Engineering
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    • v.8 no.3
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    • pp.189-200
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    • 2003
  • This paper introduces the development of a three-dimensional jig design system for automotive body welding assembly. Recently, three-dimensional CAD systems have been introduced in the jig design area, because they reduce errors in design process and the design result can be used readily for virtual manufacturing simulation. However, to facilitate three-dimensional jig design, it is essential to customize three-dimensional CAD system for this specific design area. To accomplish this object, we first standardized the parts and units in a jig assembly, and then built the standard part library. We also developed the dedicated 3D design capabilities of jig units and a jig base. By using this system, design can be performed more intuitively, and verification and simulation of design results can be done more easily. The proposed system has been implemented using the UG/Open API of the Unigraphics system.

Enhancement of CAD Model Interoperability Based on Feature Ontology

  • Lee Yoonsook;Cheon Sang-Uk;Han Sanghung
    • Journal of Ship and Ocean Technology
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    • v.9 no.3
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    • pp.33-42
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    • 2005
  • As the networks connect the world, enterprises tend to move manufacturing activities into virtual spaces. Since different software applications use different data terminology, it becomes a problem to interoperate, interchange, and manage electronic data among heterogeneous systems. It is said that approximately one billion dollar has been being spent yearly in USA for product data exchange and interoperability. As commercial CAD systems have brought in the concept of design feature for the sake of interoperability, terminologies of design features need to be harmonized. In order to define design feature terminology for integration, knowledge about feature definitions of different CAD systems should be considered. STEP standard have attempted to solve this problem, but it defines only syntactic data representation so that semantic data integration is not possible. This paper proposes a methodology for integrating modeling features of CAD systems. We utilize the ontology concept to build a data model of design features which can be a semantic standard of feature definitions of CAD systems. Using feature ontology, we implement an integrated virtual database and a simple system which searches and edits design features in a semantic way.

GEOUNED: A new conversion tool from CAD to Monte Carlo geometry

  • J.P. Catalan;P. Sauvan;J. Garcia;J. Alguacil;F. Ogando;J. Sanz
    • Nuclear Engineering and Technology
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    • v.56 no.6
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    • pp.2404-2411
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    • 2024
  • The GEOUNED code is specifically designed to convert CAD models, defined using the B-rep approach, into MC radiation transport models, defined using the CSG approach, and vice versa from MC to CAD. This code incorporates standard features commonly found in conversion tools, including decomposition, conversion, and automatic void generation. Additionally, it introduces innovative features, mainly in the automatic void generation part, which are described in this article. GEOUNED has demonstrated successful application in highly detailed 3D models used in fusion neutronics, which are known for their complex geometries, particularly those utilized in ITER. The article includes examples showcasing GEOUNED's performance in these challenging models, as well as custom applications that highlight its flexibility in addressing non-standard problems. The code is open-source and utilizes Open CASCADE as the geometry engine, with FreeCAD serving as the Python API.

Standard Operation Time Estimation Using Features in Mold Die Manufacturing (특징형상을 사용한 사출금형 표준 가공공수계산)

  • 이충수;노형민
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.18 no.1
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    • pp.223-231
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    • 1994
  • When manufacturing mold dies, an operation sheet is required for each part of the mold dies. The consistent estimation of standard operation time in the operation sheet is difficult, because the estimation is mainly based on subjective judgement. In order to resolve it, concept of feature is introduced in this study. For CAD/CAPP integration, feature technology is being implemented to represent geometrical and technological information of part drawings. A feature database has already been designed, and then used to generate data for process and operation planning modules. Related to this former research, standard operation time is calculated using the feature information and tables used in a real factory.

An Application of Catalogue Database for the Modeling of Pipe Parts in Ship Design (카탈로그 데이터베이스를 이용한 선박 배관부품의 효과적인 모델링 절차 개발 사례)

  • Hwang, Se-Yun;Lee, Jang-Hyun;Kim, Seung-Hyun;Kim, Kwang-Sik;Lee, Sung-Je
    • Korean Journal of Computational Design and Engineering
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    • v.15 no.1
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    • pp.60-69
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    • 2010
  • Outfitting systems in marine vessels have many kinds of standard parts. Ship CAD system should support the designers with an efficient tool for the modeling of outfitting parts such as pipes and valves. We develop a practical procedure for a part master model that combines ship CAD systems with the industrial standard. Part master or catalogue database of standard equipments is included in the database of ship CAD. The part master makes the associations of three dimensional modeling with the industrial standard. Moreover, it reflects the automatic modeling to maintain attributes that are disclosed in the entity of each part master in order to reduce the modeling time. Entity and attributes of pipe and valves are chosen from JIS(Japanese Industrial Standards) in order to explain the proposed procedure. Suggested procedure explains that three dimensional model of equipment is generated by parsing the pre-defined attributes after the entities of part masters is stored in database.

Study of the Data Exchange Format of GIS and CALS/EC System (GIS와 CALS/EC 시스템의 자료 교환 포맷 연구)

  • 이상길;정종철
    • Spatial Information Research
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    • v.12 no.2
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    • pp.151-163
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    • 2004
  • This study aims to develop a standard protocol by which users can exchange data information efficiently between KOSDIC and GIS. The ultimate goal from this study is to propose a data exchange format using KOSIC. The background of this study is that GIS industry sector is vigorously developing linked to spatial information construction such as UIS, LIS, EIS, AM/FM through supporting by regional government institution. According to do, the format of data transformation becomes major issue. GIS data can easily transfer to CAD version but when CAD data convert to GIS format (DWG->DXF->SHP) cannot get high success rate due to errors and problems. In addition, CAD data feature is made from oriental structure which is made of point and line faeture so that GIS system is impossible to data transformation. In the reason, the biggest problem is discordance of symbolization in integration and standard of data format. By investigation the usability of this study, conclusion are drawn efficient alternative plan in data transformation. Though this wort we will be able to provide a better transformation of data conversion between CAD format and GIS format. Accordingly, it is of important to enrich the integrated construction information infrastructure, which accommodates ever-changing constructions environment.

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Development of Integrated CAD framework for ASIC Design (ASIC 설계용 통합 CAD Framework 개발)

  • 엄성용;신혜선;이규원;박선화
    • Journal of Internet Computing and Services
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    • v.2 no.4
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    • pp.25-32
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    • 2001
  • The CAD tools for ASIC design, which are already developed or will be developed in the future, have their own functions and different working environments in many cases. Therefore, it would be more effective in achieving the final design goal, if we have a system called CAD framework in which these CAD tools are systematically integrated. In this paper, we introduce same novel techniques for integrating systematically such the CAD tools, which are usually developed under UNIX shell environments, into the CAD framework with the standard graphics interface such as X-windows. Some meta languages and script file formats are developed for flexible specification of the system MENU hierarchy and the data dependencies among executable programs. We integrated two existing CAD tools into our CAD framework using the techniques and find out the integrated protype system is working well under the new system environments.

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Building Feature Ontology for CAD System Interoperability (CAD 시스템 간의 상호 운용성을 위한 설계 특징형상의 온톨로지 구축)

  • 이윤숙;천상욱;한순흥
    • Korean Journal of Computational Design and Engineering
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    • v.9 no.2
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    • pp.167-174
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    • 2004
  • As the networks connect the world, enterprises tend to move manufacturing activities into virtual spaces. Since different applications use different data terminology, it becomes a problem to interoperate, interchange, and manage electronic data among different systems. According to RTI, approximately one billion dollar has been being spent yearly for product data exchange and interoperability. As commercial CAD systems have brought in the concept of design feature for the sake of interoperability, terminologies of design feature need to be harmonized. In order to define design feature terminology for integration, knowledge about feature definitions of different CAD systems should be considered. STEP (Standard for the Exchange of Product model data) have attempted to solve this problem, but it defines only syntactic data representation so that semantic data integration is unattainable. In this paper, we utilize the ontology concept to build a data model of design feature which can be a semantic standard of feature definitions of CAD systems. Using feature ontology, we implement an integrated virtual database and a simple system which searches and edits design features in a semantic way. This paper proposes a methodology for integrating modeling features of CAD systems.

P&R Porting & Test-chip implementation Using Standard Cell Libraries (표준 셀 라이브러리 P&R 포팅과 테스트 칩의 설계)

  • Lim, Ho-Min;Kim, Nam-Sub;Kim, Jin-Sang;Cho, Won-Kyung
    • Journal of Advanced Navigation Technology
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    • v.7 no.2
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    • pp.206-210
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    • 2003
  • In this paper, we design standard cell libraries using the 0.18um deep submircom CMOS process, and port them into a P&R (Placement and Routing) CAD tool. A simple test chip has been designed in order to verify the functionalities of the 0.18um standard cell libraries whose technical process was provided by Anam semiconductor. Through these experiments, we have found that the new 0.18um CMOS process can be successfully applied to automatic digital system design.

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