• Title/Summary/Keyword: Computer aided design system

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The factors caused errors in the production process of CAD/CAM prosthesis based on experience (임상가를 위한 특집 1 - CAD/CAM 보철물의 제작 과정에서 오류가 발생할 수 있는 요소들에 대한 경험적 고찰)

  • Huh, Jung-Bo;Shim, June-Sung
    • The Journal of the Korean dental association
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    • v.52 no.6
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    • pp.332-345
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    • 2014
  • In recent years, precision machining of the dental prosthesis by computer assisted system is becoming pervasive in clinical dentistry. Prosthesis fabricating system that is designed by computer software and made by computer devices is called as a CAD/CAM (Computer-Aided Design/Computer-Aided Manufacturing) system. By the use of dental CAD/CAM system, the improvement of marginal compatibility and mechanical properties in prosthesis can be obtained more effectively, an aesthetic quality by using new materials such as zirconia can be increased. Also, the restoration process can be simple and efficient, the production time can be shortened, the process of manufacture can be standardized, and the mass production is possible. What is clear is that these benefits are theoretically possible, but the dentist or dental technician must understand the CAD/CAM basic principles and limitations for obtaining the maximum advantages of CAD/CAM system. For this reason, this article will be presented about the basic principles of CAD/CAM system and the factors of error that might occur in the CAD/CAM process based on my empirical study.

Development of a DMU System Operated on a PDM System (PDM 시스템에서 운용되는 DMU 시스템 개발)

  • 이강수;이상헌
    • Korean Journal of Computational Design and Engineering
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    • v.8 no.3
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    • pp.157-166
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    • 2003
  • In this paper, we explain the DMU (digital mockup) system based on the PDM system. Most manufacturing companies are trying to develop a competitive product by increasing the quality, shortening time to market (TIM) and reducing the cost of a product. Some technologies such as SE (System Engineering), CE (Concurrent Engineering), QFD (Quality Function Development), CI (Cost Innovation) and some systems such as CAD (Computer-Aided Design), CAE (Computer-Aided Engineering), CAM (Computer-Aided Manufacturing), PDM (Product Data Management) and visualization system are adopted for these purposes. Specially, DMU system utilizes a visualization system that shows the 3D shape of a product on the computer and it gives a quick intuition to a person whether he/she is an engineer or not. It also can induce the effects of CE and QFD. SO, 0 company is developing a DMU system integrating CAD, visualization and PDM system. The main feature of the developed DMU system is that it is entirely integrated with PDM system, which means that the 3D shape of any part or assembly can be retrieved through PDM system. The DMU system will change the development process, which will increase the competitiveness of a developed product.

Computer Aided Process Planning for 3D Printing

  • Park, Hong-Seok;Tran, Ngoc-Hien
    • Journal of the Korean Society of Manufacturing Technology Engineers
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    • v.24 no.2
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    • pp.148-154
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    • 2015
  • Computer aided process planning (CAPP) keeps an important role between the design and manufacturing engineering processes. A CAPP system is a digital link between a computer aided design (CAD) model and manufacturing instructions. CAPP have been researched and applied in manufacturing filed, however, one manufacturing area where CAPP has not been extensively researched is rapid prototyping (RP). RP is a technique for creating directly a three dimensional CAD data into a physical prototype. RP enables to build physical models automatically and to use to reduce the time for the product development cycle as well as to improve the final quality of the designed product. Three-dimensional (3D) printing is one kind of RP that creates three-dimensional objects from CAD models. The paper presents a computer aided process planning system for printing medical products. 3D printing has been used to solve complex medical problems such as surgical instruments, bioengineered products, medical implants, and surgical guides.

Tangible Media Aided Design System

  • Kim, Gwon-Pil;Park, Min-Chul
    • Proceedings of the IEEK Conference
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    • 2002.07a
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    • pp.437-439
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    • 2002
  • Tangible user interfaces have attracted strong attention in the HCI(Human and Computer Interface) community for their ability to take advantage of skills humans develop in the real world. We are developing "tangible media aided design system" which employs physical objects i.e., brick as interfacing media for 3D graphic modeling. This system is targeting for persons who are afraid of experiencing 3D graphic modeling and virtual space, or have a sense of reluctance in approaching to them. Our approach suggests the easiest way for people to experience computer system and virtual space carefree while developing and improving their space sense. This work is one of initial explorations of media aided design system using tangible user interfaces.

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A Study on the Computer -Aided Design System of Axisymmetric Deep Drawing Process (축대칭 디프 드로잉 제품의 공정설계 시스템에 관한 연구)

  • Park, S.B.;Choi, Y.;Kim, B.M.;Choi, J.C.;Kim, B.H.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 1995.03a
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    • pp.147-154
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    • 1995
  • In this paper, a computer-aided design system for axisymmetric deep drawing process will be described. An approach to the system is based on the knowledge based system. The system has been written in AutoLISP with personal computer. The system is composed of four main modules, such as input , geometrical design, test & rectification and user modification . The system which aids designer provides powerful capabilities for the design of axisymmetric deep drawing process.

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A Development of CAD Program for Forging Die Design of Gear Components (기어류 부품의 단조 금형설계용 CAD 프로그램 개발)

  • 최종웅;조해용;최재찬;조창용
    • Journal of the Korean Society for Precision Engineering
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    • v.15 no.11
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    • pp.21-31
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    • 1998
  • This study described computer aided die design system for cold forging of non-axisymmetric parts. To design the die of cold forging. an integrated approach based on a rule-base system and commercial F. E. code were adopted. This system is implemented on the personal computer and its environment is a commercial CAD package named as AutoCAD. The system includes four modules. In the initial data input module, the variables which are necessary to design of die are inputted by user and die material are selected from the database. In the analysis and redesign module, stress distrubution action on the designed die is analyzed by commercial FEM code NISA II. The designed die is modified to prevent failure in both states of stress free and pressurizing. The developed system provides powerful capabilities for die design of non-axisymmetric parts.

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Construction of Personal Computer CAE System Support to Insulation Design (절연설계(絶緣設計)를 지원(支援)하는 Personal CAE 시스템의 구축(構築))

  • Choi, Young-Chan;Ohsima, Hirotsugu;Ohyama, Ryu-Ichiro;Kaneko, Kiyoji
    • Proceedings of the KIEE Conference
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    • 1992.07b
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    • pp.922-924
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    • 1992
  • This paper presents a CAE(Computer Aided Engineering)system for solving electrostatic field problems by means of a small size computer such as a personal computer. The system software operated on the personal computer is composed of a CAD(Computer aided Design), electric field analysis by using FEM(Finite Element Method)and DB(Data Base)of insulating materials. In addition, we discuss an application of the system to analyzing electric field such as parallel plate electrodes with an insulation spacer, which result suggests that the visualization of electric field distribution and tolerance for insulation strength enables us to assure a simplified evaluation of the insulating design.

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A Study on the Computer-Aided Design System of Axisymmetric Deep Drawing Process(1) (축대칭 디프 드로잉 제품의 공정설계 시스템에 관한 연구(I))

  • Park, S.B.;Choi, Y.;Kim, B.M.;Choi, J.C.;Kim, B.H.
    • Transactions of Materials Processing
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    • v.5 no.1
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    • pp.27-36
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    • 1996
  • In this paper a computer-aided design system for axisymmetric deep drawing process will be described. An approach to the system is based on the knowledge based system. The system has been written in AutoLISP with personal computer. The system is composed of four main modules such as input geometrical design test & rectification and user modification. the system which aids designer provides powerful capabilities for the design of axisymmetric deep drawing process.

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CAD/CAM fabricated complete denture using 3D face scan: A case report (3D face scan을 이용한 CAD/CAM 제작 의치 증례)

  • Eom, Dae-Young;Leesungbok, Richard;Lee, Suk-Won;Park, Su-Jung;Ahn, Su-Jin
    • The Journal of Korean Academy of Prosthodontics
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    • v.55 no.4
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    • pp.436-443
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    • 2017
  • In the past, computer-aided design / computer-aided manufacturing (CAD/CAM) technology was the closed system that users had to use the components of only one manufacturer. At present, it has changed to the open system with the flexibility to select and use the components of various manufacturers' components according to their needs. Despite the development of dental materials and prostheses manufacturing methods, denture manufacturing has followed conventional manufacturing methods for nearly 100 years. However, studies on CAD/CAM fabricated denture have been recently carried out to overcome the disadvantages of conventional denture manufacturing. Some commercialized products using milling or 3D printing have already been applied clinically. This case report confirms the possibility of CAD/CAM dentures using 3D face scan and compared them to conventionally fabricated dentures.

A Study on the Process Planning and Tool Design of Cold Forging Using Personal Computer (II) (PC에 의한 냉간단조 공정 및 금형설계의 자동화에 관한 연구 II)

  • 최재찬;김병민;김형섭;허만조
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.13 no.1
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    • pp.190-198
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    • 1989
  • Some Developments in computer aided procedures for cold forging process and tool design of rotationally symmetric cup shape parts are described. The developed system enables appropriate forging sequence to be determined automatically, together with details of corresponding preform, die and punch design. The computer program developed is interactive and written in BASIC. This system not only assist the heavy work of designers but greatly shorten the time of design.