• Title/Summary/Keyword: 마이크로 금형

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Manufacturing Technology of Lenticular Lens Mold by Shaping (세이핑에 의한 렌티큘러 렌즈 금형 가공)

  • Je T. J.;Choi D. S.;Lee E. S.;Shim Y. S.;Kim E. Z.;Na K. H.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 2004.11a
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    • pp.249-254
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    • 2004
  • 광의 효율적 사용을 위해 표면에 마이크로 그루브가 새겨진 고성능 광학 부품의 개발이 활발하고, 이들 부품의 다량 생산을 위한 초정밀 금형제조기술이 각광을 받고 있다. 최근의 초정밀 미세 기계가공의 경우 간단한 공정으로 이러한 마이크로 그루브 금형을 제작할 수 있다. 특히 조명각 변조용 렌티큘러 렌즈와 같이 실린더형 그루브 금형의 경우에는 기존의 Lithography, MEMS, LIGA 등 광 에너지를 이용한 다른 제조방법들에서는 가공하기 어려운 점이 있으나, 기계가공에서는 쉽게 제작가능한 장점이 있다. 본 연구에서는 이러한 미세기계가공기술의 장점을 활용하여 U 형 마이크로 그루브를 가진 Lenticular 렌즈용 금형을 가공하고자 하였다. 가공에는 3 축 구동의 초정밀 미세 복합가공기와 단결정 천연 다이아몬드공구가 사용되었고, 가공방식은 마이크로 세이핑 공정을 적용하였으며, 가공 금형 재료에는 Brass와 무전해 Nickel이 사용되었다. 실험을 통하여 금형가공시의 절삭력, 칩 형상, 가공표면 등의 분석이 수행되었으며 이를 기반으로 여러 가지 가공문제점을 해결하고, 최종적으로 양호한 렌티큘러렌즈용 금형을 가공하였다.

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고주파 유도가열기술을 이용한 사출금형 급속가열 응용사례

  • Park, Geun;Kim, Byeong-Hun
    • Journal of the KSME
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    • v.51 no.4
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    • pp.50-54
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    • 2011
  • 이 글에서는 고주파 유도가열(High-frequency induction heating)을 사용하여 사출금형 표면을 급속으로 가열하기 위한 기술을 소개하고, 국내외 적용사례(마이크로 패턴의 성형성 향상, 외관제품의 표면특성 향상 등)에 대해 소개하고자 한다.

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Micro cutting process technology for micro molds parts (마이크로 금형 부품을 위한 마이크로 절삭가공 기술)

  • Ha, Seok-Jae;Park, Jeong-Yeon;Kim, Gun-Hee;Yoon, Gil-Sang
    • Design & Manufacturing
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    • v.13 no.1
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    • pp.5-12
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    • 2019
  • In this paper, we studied the micro tool deflection, micro cutting with low temperature, and deformation of micro ribs caused by cutting forces. First, we performed an integrated machining error compensation method based on captured images of tool deflection shapes in micro cutting process. In micro cutting process, micro tool deflection generates very serious problems in contrast to macro tool deflection. To get the real images of micro tool deflection, it is possible to estimate tool deflection in cutting conditions modeled and to compensate for machining errors using an iterative algorithm correcting tool path. Second, in macro cutting fields, the cryogenic cutting process has been applied to cut the refractory metal but, the serious problem may be generated in micro cutting fields by the cryogenic environment. However, if the proper low temperature is applied to micro cutting area, the cooling effect of cutting heat is expected. Such effect can make the reduction of tool wear and burr formation. For verifying this passibility, the micro cutting experiment at low temperature was performed and SEM images were analyzed. Third, the micro pattern was deformed by the cutting forces and the shape error occurred in the sidewall multi-step cutting process were minimized. As the results, the relationship between the cutting conditions and the deformation of micro-structure during micro cutting process was investigated.

Study on the Electroforming of Fe alloy using UV-LIGA (마이크로부품 및 금형 제조를 위한 Fe계 합금전주도금에 관한 연구)

  • Son, Seong-Ho;Park, Seong-Cheol;Lee, Hong-Gi;Kim, Hyeon-Jong;Lee, Ho-Nyeon;Lee, Min-Hyeong;Lee, Won-Sik
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2011.05a
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    • pp.49-49
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    • 2011
  • 본 연구에서는 Fe계 합금전주도금 미세부품 및 금형 제조에 사용되는 전주용 Fe계 합금도금 기술을 개발을 위해 Fe-Ni 및 Fe-Ni-W 합금 전기도금에 대한 속도론적 고찰을 통해 Fe-Ni 합금도금층 내의 Fe과 Ni, Fe-Ni-W 합금 도금층 내의 Fe, Ni, W 성분 함유량에 대한 각각의 공정 제어인자를 규명하였다. Fe-Ni합금과 Fe-Ni-W합금도금층 구현에 있어 합금도금액의 합성, 최적 전류밀도 범위 도출, 합금도금층의 표면거칠기 및 경도 확보를 위한 공정조건 확립 등을 수행하였고, 전주(electroforming)를 이용하여 마이크로 기어 및 금형을 제조하였다.

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A Study on the Manufacturing Characteristics for Micro Spherical Lens Mold of Soft Materials (연질재료의 마이크로 구형렌즈금형 가공특성에 관한 연구)

  • 홍성민;이동주;제태진;최두선;이응숙
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.1466-1469
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    • 2004
  • Micro spherical lens mold processing method based on mechanical one completes a spherical shape by setting a diamond tool of hundreds $\mu$m radius on spins with high speed and then using Z-axis vertical feeding motion like the fabrication of micro drilling. In this method, we can see unprocessed parts shaped like cylinder and cone and check increasing chatter marks and burrs by setting errors of the central axis of rotation on the edge of the tool. That is why this method doesn't suit for the optical lens mold. In this paper presents unprocessed parts are disappeared and chatter marks and burrs are decreased from centre of the lens after using Run-out measuring and setting system on run-out occurred from setting tool. Also the fabrication characteristics of 6:4 Brass, A1601, PMMA are compared and analyzed, establishing the optimum machining condition on each material.

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Manufacturing of Micromolds for Plastic Molding Technologies via Synchrotron LIGA Process (방사광 LIGA 공정을 이용한 플라스틱 성형용 마이크로 금형 제작)

  • Lee, Bong-Kee;Kim, Jong-Hyun
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.14 no.4
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    • pp.1-7
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    • 2015
  • In the present study, copper micromolds with a microhole array were precisely manufactured by a synchrotron LIGA process. Like in the traditional LIGA process, a deep X-ray lithography based on a synchrotron radiation was employed as the first manufacturing step. Due to the excellent optical performance of the synchrotron X-ray used, cylindrical micropillar arrays with high aspect ratio could be efficiently obtained. The fabricated microfeatures were then used as a master of the subsequent copper electroforming process, thereby resulting in copper micromolds with a microhole array. Thermoplastic hot embossing experiments with the copper micromolds were carried out for imprinting cylindrical microfeatures onto a polystyrene sheet. Through the hot embossing, the effect of embossing temperature and usefulness of the present manufacturing method could be verified.

A Study on the Optimized Parting Surface Creation for a Micro Fan (마이크로 팬의 최적 금형파팅면 생성에 관한 연구)

  • 최상련
    • Proceedings of the Korean Society of Machine Tool Engineers Conference
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    • 1999.10a
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    • pp.245-250
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    • 1999
  • In order to design micro-fan appropriately, flow chacracteristics and mechanics should be carefully considered. The present work concerns with design procedure for a micro-fan using NACA(National Advisory Committee for Aeronautics) airfoil series. The generation of fan profiles is carried out automatically by defining related parameters, which is also converted to CAD/CAM data automatically. The optimal parting surface for the mold of micro-fan is also calculated by analyzing the geometric data numerically. As a consequence, the high capacity micro-fan can be developed successfully with a high-quality and an improved efficiency.

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