• Title/Summary/Keyword: Work Piece

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Development of Rental Children's Dress Using the Abandoned Wedding Dress II (웨딩드레스의 업싸이클링 대여 아동드레스 개발 -제2보-)

  • Park, Youshin
    • Journal of Fashion Business
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    • v.23 no.4
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    • pp.86-99
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    • 2019
  • This research is a study on up cycling design to protect nature in order to postpone global warming to the maximum extent possible as it has been a serious global issue to the fashion industry and even to individual consumers. This research focuses on the ways to use wedding dress, one of the clothes made of synthetic fiber, which is a major cause of global warming. Among clothing from the 19th century, two styles of clothes, Bustle style and Art Nouveau style were analyzed ranging from their underwear styles to outwear styles through collections in books and museums. Two styles of dress using drawers, chemise, and corset as basic underwears were manufactured. All the fabric and subsidiary materials except for parts of underwears were made with discarded wedding dresses. It was developed for rental clothing which women could try on Western costume, from underwears to outwears. First, for bustle dress, woman put on basic underwears, then bustle, and bustle-type petticoat. Dress is a two-piece type, and it was made to put on detachable train on the back of skirt. Second, based on the Art Nouveau style clothes, our-glass style dress consists of petticoat, one-piece over drawers, chemise, and corset. After putting on drawers, both chemise, and corset were the same as Bustle Style. This research is a practical way of realizing sustainable design. The aim of the current work is to provide educational effect on the development of rental clothes which upcycle wedding dress and let women experience other cultures.

A Study on the Expressive Characteristics in Verner Panton's Chair Design - Focused on chairs designed from 1955 to 1970 - (베르너 팬톤의 의자디자인에 나타난 표현특성에 관한 연구 - 1955년부터 1970년까지 디자인된 의자를 중심으로 -)

  • Kim Jinwoo
    • Korean Institute of Interior Design Journal
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    • v.14 no.2 s.49
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    • pp.178-187
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    • 2005
  • The Danish furniture designer, Verner Panton's work is comprised of the appreciation and application of the traditional for the application of a wide range of high-tech material accompanied by the bold and primary color used his work, the purpose of this study is to draw the expressive characteristics apparent in his work by analyzing the origin, background and case study of his design. The origin including the background of Verner Panton's design is based on the identity of the Danish Modernism and International design trend, which is revolved around the pop culture and is under the direct influence of Martin Johansen and Poul Henningsen. In order to understand the expressive characteristics found in the Verner Panton's chair design, a case study was conducted from 1955 where his debut piece of work, Cone chair was premiered at the Fredericia furniture Fair up through 1970 where Visiona 2 project was presented at the Koln International furniture fair. As a result, the total of 41 chair designs was analyzed by the following four criteria: form, finishing, functionality, and structure. According to the result of the analysis, the design by Verner Panton was based on the experiment of the organic form, his tendency to the pop culture, the concept of space, mobility, simplicity, and sensible creativity of space. Once criticized for being extemporary and consumptive, nevertheless, the outcome of Verner Panton's chairs not only introduced the fresh new and positive ideas that have been mass-producing for over 40 yews but also they keep on getting upgraded in accordance with the development of material.

A Study on the Ancient Fibulae

  • Kim Moon-Ja
    • The International Journal of Costume Culture
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    • v.8 no.2
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    • pp.71-84
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    • 2005
  • Fibulae have been used as clothing fasteners throughout history. They were especially popular with the Celts, but were also used by the Greeks, Romans, Saxons, and Vikings, to name a few. The earliest examples are found in the Mediterranean and Middle East, and date from 800 B. C. and earlier. Their use continues today, in the form of the modern safety pin. The first fibulae of the Bronze Age were very simple, much like modern safety pins. The form of this small functional object varies from simple to extravagant since it is also seen as a piece of jewelry, and is thus subject to the evolution of style. Its size depends on the thick/Jess of the clothing to be attached. Its fabrication demonstrates a great mastery of metal work. Fibulae would vary with the taste and wealth of the wearer. The Fibulae were divided into 10 styles according to the shape, Fibulae with Safety pin shaped style, Penannular shaped style, Animal shaped style, Diamond shaped style, Radiated head shaped style, Horsefly shaped style, Arched bow shaped style, Fan-shaped style, Trumpet shaped style, Arched-fan shaped style.

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Evaluation of dynamical performance of 3 dimensional multi-arm robot (3차원 다중 로봇의 동적 성능 평가)

  • 김기갑;김충영
    • 제어로봇시스템학회:학술대회논문집
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    • 1997.10a
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    • pp.756-759
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    • 1997
  • Multi-arm cooperation robot system is required for more specific and dextrous jobs such as transferring very large or heavy objects, or grasping work piece while processing on it. There is little research on 3-dimensional multi-arm robot. Here we propose two performance indices presenting isotropy of end-effector's acceleration and velocity capabilities with constraints of joint torques, that is Isotropic Acceleration Radius [IAR] and Isotropic Velocity Radius [IVRI. Also the procedure to find 3-dimensional IAR, IVR is proposed, where available acceleration set concept is used. The case of 3-dimensional two 3 joint robot system was simulated and the distributions of IAR, IVR was studied.

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A Semiotic Study of the Generative Trajectory in Animation 'My Neighbor Totoro' Character Works (애니메이션 캐릭터의 기호학적 생성구조에 관한 연구 -<이웃집 토토로>를 중심으로-)

  • Kim Yun-Bae
    • Journal of Science of Art and Design
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    • v.6
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    • pp.288-312
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    • 2004
  • Despite the government's efforts and excessive investments in the establishment of an infrastructure for animation, it can be said that the reasons for the inferiority in character licensing and weak performances compared to other leading countries is attributed to the fundamental factor tying within the piece of work itself. Therefore, this research is aimed at finding a counterproposal by assuming that the reason for the failure of our country's animation 'Oseam' was because of its narrative tactics. First, it is possible for a narrative structure to be participated by the audience's creative strategy Second, the audience's participation makes it possible to create the character into a multilateral and a complex personality. Third, this kindof creative strategy is possible when semiotic analyses are utilized. The sole objective for this is to provide a comprehensive viewpoint for the semiotic approach in the creation process of the character.

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Design of High Precision Spindle System for Grinding Machine (고정밀 연삭기용 주축시스템 설계)

  • 편영식;이건범;박정현;요꼬이요시유끼;여진욱;안건준;곽철훈
    • Transactions of the Korean Society of Machine Tool Engineers
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    • v.12 no.3
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    • pp.68-74
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    • 2003
  • Any one of the high precision spindle systems and guide way systems, the high stiffness of structure, the error compensation during assembly, high accuracy control system is inevitable technology for development of high precision machine tools. Especially, among these, design of spindle system is one of the most important technologies leading high precision of machine tool and high quality of manufactured products. A high speed and high precision spindle system, which will be used for final machining of ferrule, is designed considering the effect of heat cutting torque, cutting fore, and work-piece materials. The detailed design and analysis process are presented.

Design of High Precision Spindle System for Ferrule Grinding Machine (페룰 가공용 고정밀 주축시스템 설계)

  • 편영식;박정현;이건범;요꼬이요시유끼;여진욱
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2002.05a
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    • pp.15-19
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    • 2002
  • With the rapid development of industrial technologies, the demand for high precision products has been increasing drastically. For this reason, the need for developing of high performance machine tool, which can ensure high precision, is desired in the industrial fields. Technologies on the spindle system manufacture, guideway manufacture, error compensation, design of bed structure, protection against vibrations, and system integration are core technology for developing of high precision machine tools. Especially, among these, design of spindle system, which is leading precision and manufacturing technique. is one of the most important technologies. A high speed and high precision spindle system, which will be used for final machining of ferrule, is designed considering the effect caused by thermal, cutting torque, cutting farce, and work-piece materials. The detail process of analysis is presented.

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Proposal Model for Programming Numerical Control Lathe Basis on the Concept by Features

  • N.Ben Yahia;Lee, Woo-Young;B. Hadj Sassi
    • International Journal of Precision Engineering and Manufacturing
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    • v.2 no.3
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    • pp.27-33
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    • 2001
  • The aim of the present work is to propose a model for Computer Aided programming of numerical Control lathe. This model is based on the concept by features. It has been developed in an Artificial Intelligence environment, that offers a rapidity as well as a precision for NC code elaboration. In this study a pre-processor has been elaborated to study the geometry of turning workpiece. This pre-processor is a hybrid system which combine a module of design by features and a module of features recognition for a piece provided from an other CAD software. Then, we have conceived a processor that is the heart of the CAD/CAM software. The main functions are to study the fixture of the workpiece, to choose automatically manufacturing cycles, to choose automatically cutting tools (the most relevant), to simulate tool path of manufacturing and calculate cutting conditions, end to elaborate a typical manufacturing process. Finally, the system generates the NC program from information delivered by the processor.

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Die Manufacturing and Repair Using Laser-Aided Direct Metal Manufacturing (레이저 직접금속조형(DMM)기술에 의한 금형제작 및 보수)

  • 지해성;서정훈
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2002.05a
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    • pp.104-107
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    • 2002
  • Direct Metal Manufacturing (DMM) is a new additive process that aims to take die making and metalworking in an entirely new direction. It is the blending of five common technologies : lasers, computer-aided design (CAD), computer-aided manufacturing (CAM), sensors and powder metallurgy. The resulting process creates parts by focusing an industrial laser beam onto a tool-steel work piece or platform to create a molten pool of metal. A small stream of powdered tool-steel metal is then injected into the melt pool to increase the size of the molten pool. By moving the laser beam back and forth, under CNC control, and tracing out a pattern determined by a computerized CAD design, the solid metal part is built line-by-line, one layer at a time. DMM produces improved material properties in less time and at a lower cast than is possible with traditional fabrication.

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Determination of the Overall Heat Transfer Coefficient for Non-isothermal Finite Element Analysis (비 등온 유한요소해석을 위한 접면열전달계수의 결정)

  • 강연식;양동열
    • Journal of the Korean Society for Precision Engineering
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    • v.14 no.4
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    • pp.72-77
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    • 1997
  • In the temperature analysis of hot metal forming process, the heat transfer conditions between the work-piece and the tool have improtant influences upon the temperature distribution. The accuracy of thermal analysis depends on the proper description of boundary conditions including heat transfer. At the contact surface of two materials with different temperatures, this requires the knowledge of the overall heat transfer coefficient. In order to determine the overall heat transfer coefficient, a technique is developed. The technique involves temperature measurement by using thermocouples during hot upsetting operations and finite element computation. The overall heat transfer coefficient is determined using a non-linear optimization technique.

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