• Title/Summary/Keyword: 쾌속 제작

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복셀 차감법을 이용한 나노 복화(複畵)공정의 정밀화

  • 임태우;박상후;양동열;이신욱;공홍진
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.05a
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    • pp.155-155
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    • 2004
  • 최근 집중 육성산업으로 분류되어 연구 및 투자가 되고 있는 반도체, 정보통신, 바이오산업, 디스플레이 등에서 초정밀화와 저비용, 대량생산을 하기 위해서 기존의 공정을 대체할 수 있는 새로운 나노공정기술의 요구가 급증하고 있다 최근에는 극초단파 특성으로 인하여 극미세 형상을 가공할 수 있는 펨토초 레이저(femto second laser)를 나노공정에 적용하는 다양한 연구가 진행되고 있다. 특히, 기존의 쾌속조형공정을 응용하여 다른 공정으로는 제작이 불가능한 나노 스케일에서 3차원 자유곡면을 가지는 구조물을 제작할 수 있는 공정개발에 대하여 다양한 연구가 진행되고 있다.(중략)

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Development of Rapid Tooling Technology for Shoe Mold and Its Applications (신발 금형의 쾌속제작기술 개발 및 그 적용에 관한 연구)

  • Chung, Sung-Il;Im, Yong-Gwan;Jeong, Hae-Do;Jeong, Du-Su;Bae, Tae-Yong;Lee, Seok-Woo;Choi, Han-Zong
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.27 no.8
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    • pp.1371-1379
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    • 2003
  • RP&M (Rapid Prototyping and Manufacturing) is the most appropriate technology for the small-lot production system, because the production cycle is getting shorter owing to various needs of the consumer. In this paper, rapid tooling technology is applied to the casting process. The casting process has the ability to reflect complicated shapes in one process. But it has not been widely used to make a die and mold because of the poor surface quality caused by air bubbles on the surface of the casting product. In this study, the porous casting mold is fabricated from a mixture of plaster and water-soluble binder. The porous casting mold can improve the characteristics of casting products with the help of the vacuum sealed casting process. The vacuum sealed casting process is an advanced technology that removes the air bubbles between the porous casting mould and the liquid metal, thus making the surface of the casting product finer. The purpose of this paper is to develop a high quality shoe mold using porous casting mold and to apply the RP&M technology to the shoe industry.

A study on the Rapid Tooling Using Metal Powder Filled Resin (금속분말 혼합수지를 이용한 쾌속 형 제작에 관한 연구)

  • Kim, Peom-Su;Bae, Won-Byung;Jeong, Hae-Do
    • Journal of the Korean Society for Precision Engineering
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    • v.16 no.6
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    • pp.36-44
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    • 1999
  • The rapid Tooling technique is classified into two methods: one to directly utilize the model which was made by rapid prototyping technologies for dies, and the other to make a transferred type using the model as a master model and create dies and molds using it. In this study, the Al powder filled resin was made several mixed ratios and meshes sizes, and applied to slurry casting. And, variation of mechanical characteristics such as the shrinkage rate, the tensile strength, the elongation, the hardness, and surface roughness, are measured to compare. Consequently, as higher is the powder mixed ration and as smaller is the grain size of the power, the mechanical characteristics of the final mold are improved. Finally, the metal short fiber which can be fabricated easily and cheaply, if the self-excited vibration of an elastic tool, was also applied to slurry casting. It has been found tat the hardness gets higher, while the shrinkage rate lower, if mixed with short fiber.

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Rapid Manufacturing of 3D Thin-walled Products using Plastics and Metals (플라스틱과 금속재료를 이용한 3 차원 박벽 제품의 쾌속 제작)

  • Shin Bo-Sung;Kang Bo-Sik;Park Jae-Hyun;Rho Chi-Hyun
    • Journal of the Korean Society for Precision Engineering
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    • v.23 no.8 s.185
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    • pp.195-202
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    • 2006
  • High-speed machining (HSM) with excellent quality and dimensional accuracy has been widely used to create 3D structures of metal and plastics. However, the high-speed machining process is not suitable for the rapid realization of 3D thin-walled product because it consumes considerably long time in fixturing process of a work piece. In this paper, an effective rapid manufacturing process is proposed to fabricate 3D thin-walled products directly using HSM, phase change filling and ultrasonic welding. The filling process is useful to hold the thin-walled product during the machining step. The ultrasonic welding process is introduced to make one piece product from two piece parts that are machined by HSM and filling process. The proposed rapid manufacturing (RM) process has been shown that the RM process enables to fabricate the 3D thin-walled products using ABS plastics and aluminum metals from 3D CAD data to functional parts.

The Study on Manufacturing Process Improvement of Rapid Prototyping by using SLC File (SLC파일을 이용한 쾌속조형장치의 가공공정 개선에 관한 연구)

  • 김태호;김민주;이승수;이준희;전언찬
    • Proceedings of the Korean Society of Machine Tool Engineers Conference
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    • 2004.04a
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    • pp.293-297
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    • 2004
  • This paper is described manufacturing to jewelry by using rapid prototype. At that time, the SLC file is useful for solved generating errors to part build file. Then. we have reduced the time of manufacturing complicated three-dimensional form. Generally, it is used the STL file for rapid prototype that it is necessary to considerable time when complicated firm as jewelry generated pan build file. But the SLC file is solved to problem because it consists of configuration of a section. Neter the less, Generating Part build file hate had a lot of problem when the SLC file is used.

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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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Development of Aroma Diffuser Using Rapid Prototyping System (쾌속조형기를 이용한 방향기의 개발)

  • 주영철;이창훈
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.3 no.4
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    • pp.303-307
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    • 2002
  • A new product development procedure that uses a rapid prototyping and 3D CAD has been suggested. By applying this procedure to the development of an aroma diffuser, considerable amount of development time and cost were reduced. Moreover, by using 3D CAD from the early design stage, the number of trial and error can be reduced.

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A Study on the Manufacturing of Large Size Hollow Shape Parts for Prototype-Car using Rapid Prototyping Technology and Vacuum Molding (쾌속조형 기술과 진공성형법을 이용한 시작차량용 대형 중공 부품의 제작에 관한 연구)

  • 박경수;양화준;최경현;이석희
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2000.11a
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    • pp.362-365
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    • 2000
  • Rapid Prototyping(RP) techniques have revolutionized traditional manufacturing methods. These techniques allow the user to fabricate a part directly from a conceptual model before investing in production tooling and help develop new models with significant short time. This paper suggests to new process to manufacture large size hollow shape parts for prototype-car using Rapid Prototyping technology and Vacuum Molding with the reduction of delivery time. In addition, This paper introduces the dividing and combining method to make large size RP master model in spite of the limit of the build chamber dimensions of commercialized RP system and post-processing method to achieve sufficient surface quality.

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Bio-degradable 3D-scaffold fabrication using rapid-prototyping system (쾌속조형시스템을 이용한 생체 조직 재생용 지지체 제작과 특성분석)

  • Kim, Ji-Woong;Park, Ko-Eun;Lee, Jun-Hee;Park, Su-A;Kim, Wan-Doo
    • Proceedings of the KSME Conference
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    • 2008.11a
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    • pp.1697-1699
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    • 2008
  • The purpose of tissue engineering is to repair or replace damaged tissues or organs by a combination of cells, scaffold, suitable biochemical and physio-chemical factors. Among the three components, the biodegradable scaffold plays an important role in cell attachment and migration. In this study, we designed 3D porous scaffold by Rapid Prototyping (RP) system and fabricated layer-by-layer 3D structure using Polycarprolactone (PCL) - one of the most flexible biodegradable polymer. Furthermore, the physical and mechanical properties of the scaffolds were evaluated by changing the pore size and the strand diameter of the scaffold. We changed nozzle diameter (strand diameter) and strand to strand distance (pore size) to find the effect on the mechanical property of the scaffold. And the surface morphology, inner structure and storage modulus of PCL scaffold were analyzed with SEM, Micro-CT and DMA.

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Variations of Form Accuracy in the Process of Metal Cast Prototyping using Rapid prototype, Vacuum casting and Ceramic Mold (쾌속조형과 진공주형 및 세라믹 몰드를 이용한 금속 주조 시제품 제작 공정에서의 형상정밀도 변화)

  • Kim, Gi-Dae
    • Journal of the Korean Society for Precision Engineering
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    • v.24 no.6
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    • pp.131-137
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    • 2007
  • In metal casting process, it is very difficult to predict the form accuracy of cast part and reduce repeatability error. In this study, the variations of form accuracy were measured in the process of metal cast prototyping, where RP part is manufactured from CAD model in the first, and then, wax part is cast in the vacuum environment using the RP part as master model, and finally metal prototype is cast using ceramic mold and the wax part as pattern. To investigate the variations of form accuracy, the averages and standard deviations of error distribution of the parts measured by 3D scanner were compared. It was observed that the biggest shrinkage is generated during the extraction of wax part in the second step and the biggest deterioration of form accuracy is generated during the metal part casting in the last step.