• Title/Summary/Keyword: 비구면도

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The Development of CAM Software for Ultra-precision Aspheric Surface (초정밀 비구면 가공용 CAM 소프트웨어 개발에 대한 연구)

  • Yang, Min-Yang;Lee, Taik-Min
    • Journal of the Korean Society for Precision Engineering
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    • v.19 no.4
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    • pp.79-86
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    • 2002
  • As consumer electronics, information, and aero-space industry grow, the demand for aspheric lens increases higher. To enhance the precision and productivity of aspheric surface, a CAM system for ultra-precision aspheric surface needs to be realized. In this study, the developed CAM system can generate NC code fur various aspheric surfaces fast and precisely by a new bi-arc interpolation method that the location of maximum error is fixed at an efficient point. The newly developed bi-arc meets the given tolerance more precisely, performs faster calculation. The cutting condition input module and the NC code verification module are adequate to ultra-precision machining, so that a operator can obtain products fast and easily.

Evaluation on the Optimum Grinding of Aspheric Surface Micro Lens for Camera Phone (휴대폰 카메라용 비구면 마이크로 렌즈 최적 연삭가공 평가)

  • Baek Seung-Yub;Lee Eun-Sang
    • Transactions of the Korean Society of Machine Tool Engineers
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    • v.15 no.2
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    • pp.1-9
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    • 2006
  • As consumers in optics, electronics, aerospace and electronics industry grow, the demand for ultra-precision aspheric surface lens increases higher. To enhance the precision and productivity of ultra precision aspheric surface micro lens, the development of ultra-precision grinding system and process for the aspheric surface micro lens are described. In the work reported in this paper, an ultra-precision grinding system for manufacturing the aspheric surface micro lens was developed by considering the factors affecting the ground surface roughness and profile accuracy. This paper deals with mirror grinding of an aspheric surface micro lens by resin bonded diamond wheel and spherical lens of BK7. The optimization of grinding conditions on ground surface roughness and profiles accuracy is investigated using the design of experiments.

제 1장. 연삭가공의 기초

  • Korea Optical Industry Association
    • The Optical Journal
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    • s.105
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    • pp.49-56
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    • 2006
  • 한국광학기기협회에서는‘한·일 광산업 기술협력’을 보다 효율적으로 추진하기 위하여 해마다 일본 연수기관 및 기업에 대한 현장연수를 실시하고 있는 가운데, 올해는 처음으로 지난 8월에 일본정밀공학회(JSPE)에서 주최하는‘차세대 초정밀광학부품 나노가공기술연수’를 실시했다. 연수기관은 일본 센다이 소재의 동북대학(Tohoku University)으로 구리야가와 츠네모토 교수가 교육을 담당했다. 주요 연수 내용으로는 마이크로 광학부품가공/초정밀 비구면 렌즈 가공/전기점성유체를 이용한 비구면 렌즈 코아 연마/특수광학렌즈 SPDT 가공/초고속 가공/마이크로 AJM 가공/마이크로 초음파가공이며 본 고에서는 직접 연수에 참가 못한 독자들을 위해 연수내용을 번역 게재하고자 한다. 이달에는 제1장 연삭가공의 기초 게재를 시작으로 11월호에 이어서 나머지 2,3,4장 교육과정내용을 게재할 예정이다.

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Selection of optimal machining condition for productivity enhancement of aspheric surface lens (비구면 렌즈의 생산성 향상을 위한 최적가공조건선정)

  • Baek S.Y.;Lee H.D.;Kim S.C.;Lee E.S.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2006.05a
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    • pp.561-562
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    • 2006
  • To enhance the precision and productivity of ultra precision aspheric surface micro lens, the development of ultra-precision grinding system and process for the aspheric surface micro lens are described. In the work reported in this paper, an ultra-precision grinding system for manufacturing the aspheric surface micro lens was developed by considering the factors affecting the grinding surface roughness and profile accuracy. This paper deals with mirror grinding of an aspheric surface micro lens by resin bonded diamond wheel and spherical lens of BK7. The optimization of grinding conditions on ground surface roughness and profiles accuracy is investigated using the design of experiments.

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The Development of CAM Software for Ultra-precision Aspheric Surface (초정밀 비구면 선삭가공용 CAM 소프트웨어 개발에 대한 연구)

  • 양민양;이택민;이성찬;이재윤;김태형
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1996.11a
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    • pp.534-537
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    • 1996
  • As consumer electronics, information, and aero-space industry grow, the demand for aspheric lens increases higher. To enhance the precision and productivity of aspheric surface, a CAM system for ultra-precision aspheric surface needs to be realized. In this study, the developed CAM system can generate NC code for various aspheric surfaces fast and precisely by Tri-arc interpolation method that the location of maximum error is fixed. The cutting condition input module and the NC code verification module are adequate to ultra-precision machining, so that a operator can obtain products fast and easily.

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비구면 마이크로 렌즈 가공 시스템의 기술개발 동향

  • 백승엽;이해동;김성철;이은상
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.05a
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    • pp.34-34
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    • 2004
  • 정보의 급속한 발전, 컴퓨터, 가전기기, 자동차등 내구 소비재의 제품 개발기간 단축, 생산자의 지속적인 생산성 향상 활동, 소비자 선호의 다양성, 품질 요구 수준 상승 등 제반 환경변화는 절삭가공부분에 있어 핵심이 되고 있다. 여기에 전통적 제조업의 고부가가치화 및 새로운 시스템의 도입 등과 맞물려 최근의 초정밀 공작기계는 고속화, 고정밀화를 바탕으로 크게 발전하고 있다, 특히 21세기로 향하는 지금 공작기계 기술은 고속화, 정밀화, 개방화, 환경친화의 방향으로 혁신을 지속하고 있으며, 머지 않아 마이크로 프로세서의 급속한 발전에 힘입어 고속화 기술은 극 초고속화 단계로, 정밀화 기술은 극 초정밀화 단계로, CNC 기술은 오픈화 및 네트워크화를 통한 다양한 통신기술이 부가됨으로써 설계, 생산, 영업 및 서비스 정보와 연계시켜 통합제어를 통한 타 지역의 공작기계를 원격제어 할 수 있는 단계로 이르게 될 것이다.(중략)

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The prediction of the optimum injection conditions of aspherical lens by using FEM and Neural Network (비구면 광학렌즈 성형에 있어서 유한요소법과 신경회로망을 이용한 사출조건 예측 시스템의 개발)

  • 곽태수;스즈키토오루;오오모리히토시;배원병
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2002.10a
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    • pp.168-171
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    • 2002
  • A neural network model for predicting the quality or soundness of the injected plastic aspherical lens based on process parameters has been developed. The approach uses a Real Time Recurrent Neural Network 4-5-2 (RTRN) trained based on input/output data that were taken from FE analysis worts carried out through a CAE software. The system has been developed to search an optimum set of process parameters and reduce the time required for planning the conditions of plastic injection molding at the design stage.

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Opical design of small and light weight Eye Glass Display (소형, 경량의 Eye Glass Display 광학계 설계)

  • Park, Yeong-Su;Seok, Jong-Min;Kim, Hwi-Un;Kim, Tae-Ha;Park, Gwang-Beom;Mun, Hyeon-Chan
    • Proceedings of the Optical Society of Korea Conference
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    • 2005.07a
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    • pp.34-35
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    • 2005
  • Eye Glass Display(EGD)에 사용되는 광학계를 비구면과 Diffractive Optical Element(DOC)를 이용한 플라스틱 렌즈로 구성하여 소형, 경량으로 제작이 가능하게 설계하였다. 비구면과 DOE를 최적화한 1매의 렌즈로 광학계를 구성하여 display의 길이를 줄이고, 왜곡과 색수차를 보정하며 해상력을 향상 시켰다. 더불어, 광학계는 안경 착용자가 불편하지 않을 정도의 eye relief와 눈의 움직임에 여유를 가질 수 있는 크기의 eye motion box(exit pupil)를 가진다.

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Optimal Grinding Condition of Tungsten Carbide(WC) for Aspheric Glass Lens Using DOE (DOE를 적용한 비구면 Glass 렌즈 성형용 초경합금(WC) 코어 연삭가공 최적화)

  • Kim, Hyun-Uk;Jeong, Sang-Hwa;Ahn, Jun-Hyung;Cha, Du-Hwan;Lee, Dong-Gil;Kim, Sang-Suk;Kim, Hye-Jeong;Kim, Jeong-Ho
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.5 no.4
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    • pp.41-45
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    • 2006
  • In recent years, the demands of the aspheric glass lenses increase since it is difficult to obtain the desirable performance in the plastic lens. Glass lens is manufactured by the forming with high precision mold core. This paper presents the analysis of optimal grinding condition of tungsten carbide(WC, Co 0.5%) using design of experiments(DOE). The process parameters are turbin spindle, work spindle, feedrate and depth of cut. The experiments results are evaluated by MINITAB software.

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Development of Aspheric Surface Profilometry using 2nd Derivative (형상의 이차미분을 이용한 비구면 형상측정기술 개발)

  • Kim, Byoung-Chang
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.10 no.2
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    • pp.104-109
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    • 2011
  • I present a method of aspheric surface profile measurement using 2nd derivative of local area profile. This method is based on the principle of curvature sensor which measures the local 2nd derivative under test along a line. The profile is then reconstructed from the data on the each point. Unlike subaperture-stiching method and slope detection method, 2nd derivative method has strong points from a geometric point of view in measuring the aspheric surface profile. The second derivative terms of surface profile is an intrinsic property of the test piece, which is independent of its position and tip-tilt motion. The curvature is measured at every local area with high accuracy and high lateral resolution by using White-light scanning interferometry.