• Title/Summary/Keyword: Ultra precision

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Ultra-precision Grinding Optimization of Mold Core for Aspheric Glass Lenses using DOE and Compensation Machining (실험계획법과 보정가공을 이용한 비구면 유리렌즈 성형용 코어의 초정밀 연삭가공 최적화)

  • Kim, Sang-Suk;Lee, Yong-Chul;Lee, Dong-Gil;Kim, Hye-Jeong;Kim, Jeong-Ho
    • Journal of the Korean Society for Precision Engineering
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    • v.24 no.6
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    • pp.45-50
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    • 2007
  • The aspheric lens has become the most popular optical component used in various optical devices such as digital cameras, pick-up lenses, printers, copiers etc. Using aspheric lenses not only miniaturizes and reduces the weight of products, but also lower prices and higher field angles can be realized. Additionally, plastic lenses are being changed to glass lenses more recently because of low accuracy, low acid-resistance and low thermal-resistance in the plastic lenses. Currently, one fabrication method of glass lenses is using a glass-mold method with a high precision mold core for mass production. In this paper, DOE (Design Of Experiments) and compensation machining were adopted to improve the surface roughness and the form accuracy of the mold core. The DOE has been done in order to discover the optimal grinding conditions which minimize the surface roughness with factors such as work spindle revolution, turbine spindle revolution, federate and cutting depth. And the compensation machining is used to generate high form accuracy of the mold core. From various experiments and analyses, we could obtain the best surface roughness 5 nm in Ra, form accuracy $0.167\;{\mu}m$ in PV.

Examples of Performance Estimation on the Feed System of Precision Machine Tools (정밀공작기계용 이송시스템의 성능평가 사례)

  • 박천홍;황주호
    • Journal of the Korean Society for Precision Engineering
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    • v.21 no.8
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    • pp.19-26
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    • 2004
  • 정밀 공작기계에 있어 안내/이송계(이하, 이송시스템)의 중요성은 새삼스럽게 강조할 필요가 없을 정도로 꾸준히 강조되어 왔다. 또한, 최근 들어서는 광부품, 반도체, 디스플레이 등 초정밀 가공기술시장의 급격한 확대에 따라 이들 산업의 제조장비용 핵심기술로서 이송시스템의 역할 및 수요는 훨씬 확대되어가고 있으며, 오히려 요구정밀도 면에서는 공작기계상에서의 요구성능을 초월하여, 이들 산업에서 개발된 기술이 역으로 공작기계에 적용되어야하는 시점으로까지 진전되고 있다.(중략)

The Minimizing of Cutting Depth using Vibration Cutting (진동절삭법을 이용한 절삭깊이의 최소화)

  • 손성민;안중환
    • Journal of the Korean Society for Precision Engineering
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    • v.21 no.11
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    • pp.38-45
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    • 2004
  • This paper discusses the minimum cutting thickness with a continuous chip in sub-micrometer order precision diamond cutting. An ultra precision cutting model is proposed, in which the tool edge radius and the friction coefficient are the principal factors determining the minimum cutting thickness. The experimental results verify the proposed model and provide various supporting evidence. In order to reduce the minimum cutting thickness a vibration cutting method is applied, and the effects are investigated through a series of experiments under the same conditions as conventional cutting method.