• 제목/요약/키워드: Glass lens materials

검색결과 62건 처리시간 0.022초

유리구슬을 사용하여 제조된 재귀반사시트의 구조 및 재귀반사 특성 연구 (Structural and Physical Properties of Reflective Sheets Prepared by Using Glass Beads)

  • 임두현;이민호;허민영;안주현;박진우;유지현;김종선;류호석;안효준;김익환
    • Elastomers and Composites
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    • 제46권4호
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    • pp.277-283
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    • 2011
  • 본 연구에서는 유리구슬을 사용하여 일반반사지 및 고휘도 반사지를 제조하여 그들의 반사성능과 물리적 특성을 조사하였다. 유리구슬형 재귀반사 시트의 제조 방법에는 봉입렌즈형과 캡슐렌즈형의 두 가지로 구분될 수 있는데 유리구슬이 공기에 노출되는지 그렇지 않은지를 통해서 구분한다. 유리구슬 위를 덮고 있는 층이 있는 봉입렌즈형은 유리구슬 위의 한 개의 층으로 된 캡슐렌즈형에 비해 악천 후에도 휘도 변화가 거의 없다. 유리구슬의 도포량에 따라 휘도가 달라지므로 최적의 도포량을 조사하였고, 다양한 색상을 지니는 유리구슬 형태의 봉입렌즈형 재귀반사 시트와 캡슐렌즈형 재귀반사 시트를 제조하여 입사각과 관찰각에 따른 재귀반사 시트의 휘도를 조사하여 비교하였다. 공기에 노출되는 캡슐렌즈형 백색 재귀반사 시트의 휘도가 $210.4cd/1x{\cdot}m^2$으로 봉입렌즈형의 $74cd/1x{\cdot}m^2$ 보다 높은 것으로 나타났다. 그리고 세탁전과 후의 휘도변화를 통하여 재귀반사 시트의 세탁력과 점착성능을 분석하였는데, 캡슐렌즈형은 세탁 후 유리구슬의 수가 줄었고 또한 알루미늄 증착면이 훼손되어 증착된 부분이 일어난 것을 확인할 수 있었다.

비구면 렌즈의 설계 및 제조를 위한 칼코게나이드계 유리의 물리적 화학적 특성 연구 (A study on physical and chemical properties of chalcogenides for an aspheric lens)

  • 고준빈;김정호
    • 한국생산제조학회지
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    • 제19권3호
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    • pp.388-393
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    • 2010
  • In recent years the research has been focused on the preparation of special glasses, i.e., chalcogenide and heavy metal oxide ones that can transmit optical radiation above 2 um and also other optical parameters exceed those of silica based glasses. The attention in this paper is focused on chalcogenide glasses, on preparation of high quality base glass, for an application in infrared optical product design and manufacture. The amorphous materials of As-Se and Ge-As-Se chalcogenides were prepared by a standard melt-quenching technique. The compositions were mesaured by ICP-AES and EPMA, and structural and thermal properties were studied through various annealing processes. Several anomalies of glass transition and crystallization were observed in the DSC/DTA/TG results of the chalcogenide glass.

Application of ta-C Coating on WC Mold to Molded Glass Lens

  • Lee, Woo-Young;Choi, Ju-hyun
    • Tribology and Lubricants
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    • 제35권2호
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    • pp.106-113
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    • 2019
  • We investigated the application of tetrahedral amorphous carbon (ta-C) coatings to fabricate a glass lens manufactured using a glass molding process (GMP). In this work, ta-C coatings with different thickness (50, 100, 150 and 200 nm) were deposited on a tungsten carbide (WC-Co) mold using the X-bend filter of a filtered cathode vacuum arc. The effects of thickness on mechanical and tribological properties of the coating were studied. These ta-C coatings were characterized by atomic force microscopy, scanning electron microscopy, nano-indentation measurements, Raman spectrometry, Rockwell-C tests, scratch tests and ball on disc tribometer tests. The nano-indentation measurements showed that hardness increased with an increase in coating thickness. In addition, the G-peak position in the Raman spectra analysis was right shifted from 1520 to $1586cm^{-1}$, indicating that the $sp^3$ content increased with increasing thickness of ta-C coatings. The scratch test showed that, compared to other coatings, the 100-nm-thick ta-C coating displayed excellent adhesion strength without delamination. The friction test was carried out in a nitrogen environment using a ball-on-disk tribometer. The 100-nm-thick ta-C coating showed a low friction coefficient of 0.078. When this coating was applied to a GMP, the life time, i.e., shot counts, dramatically increased up to 2,500 counts, in comparison with Ir-Re coating.

비구면렌즈 설계를 위한 칼코게나이드 Ge-Sb-Se 광학계 및 결정화 특성 연구 (Chalcogenide Ge-Sb-Se Optical and Crystallization Characteristics for Basic a Planning Aspheric Lens)

  • 명태식;고준빈
    • 한국재료학회지
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    • 제26권11호
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    • pp.598-603
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    • 2016
  • The recent development of electro-optic devices and anticorrosion media has led to the necessity to investigate infrared optical systems with solid-solid interfaces of materials that often have the characteristic of amorphousness. One of the most promising classes of materials for those purposes seems to be the chalcogenide glasses. Chalcogenide glasses, based on the Ge-Sb-Se system, have drawn a great deal of attention because of their use in preparing optical lenses and transparent fibers in the range of 3~12 um. In this study, amorphous Ge-Sb-Se chalcogenide for application in an infrared optical product design and manufacture was prepared by a standard melt-quenching technique. The results of the structural, optical and surface roughness analysis of high purity Ge-Sb-Se chalcogenide glasses are reported after various annealing processes.

비구면렌즈 설계를 위한 칼코게나이드 Ge-Sb-Se계 구조적, 광학적 특성 연구 (Structural and Optical Characteristics of ChalcogenideGe_Sb_Se for Basic Aspheric Lens Design)

  • 고준빈;명태식
    • 한국생산제조학회지
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    • 제23권2호
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    • pp.133-137
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    • 2014
  • The recent development of electro-optic devices and anticorrosion media has made it necessary investigate infrared optical systems with solid-solid interfaces of materials with amorphous characteristics. One of the most promising classes of materials for these purposes seems to be chalcogenide glasses, which are based on the Ge_Sb_Se system, have drawn much attention because of their use in preparing optical lenses and fibers that are transparent in the range of 3-12 um. In this study, a standard melt-quenching technique was used to prepare amorphous Ge_Sb_Sechalcogenideto be used in the design and manufacture of infrared optical products. The results of structural, optical, and surface roughness analyses of high purity Ge_Sb_Sechalcogenide glasses after various annealing processes reported.

Athermal and Achromatic Design for a Night Vision Camera Using Tolerable Housing Boundary on an Expanded Athermal Glass Map

  • Ahn, Byoung-In;Kim, Yeong-Sik;Park, Sung-Chan
    • Current Optics and Photonics
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    • 제1권2호
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    • pp.125-131
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    • 2017
  • We propose a new graphical method for selecting a pair of optical and housing materials to simultaneously athermalize and achromatize an LWIR optical system. To have a much better opportunity to select the IR glasses and housing materials, an athermal glass map is expanded by introducing the DOE with negative chromatic power. Additionally, from the depth of focus in an LWIR optical system, the tolerable housing boundary is provided to realize an athermal and achromatic system even for not readily available housing material. Thus, we can effectively determine a pair of optical and housing materials by reducing the thermal shift to be less than the depth of focus. By applying this method to design a night vision camera lens, the chromatic and thermal defocuses are reduced to less than the depth of focus, over the specified waveband and temperature ranges.

순차이송방식 GMP 공정에서 공정변수가 유리렌즈 성형성에 미치는 영향 (Effect of the Molding Conditions on Formability in Progressive Glass Molding Press)

  • 정태성;박규섭;김동식
    • 소성∙가공
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    • 제18권8호
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    • pp.633-639
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    • 2009
  • Remarkable progress had been made in both technology and production of optical elements including aspheric lens. In the past, precision optical glass lenses were produced through multiple processes such as grinding and polishing, but mass production of aspheric lenses requiring high accuracy and having complex profile was rather difficult. Against such a background, the high-precision optical GMP process was developed with an eye on mass production of precision optical glass pasts by molding press. This GMP process can produce with precision and good repeatability special form lenses such as for cameras, video cameras, aspheric lenses for optical items. In this study, Design Of Experiment(Taguchi method) was adopted to find a tendency of molding conditions that influence formability. Three main factors for molding conditions were selected based on pressure at pressing stage and temperature, pressure at cooling stage. Also, the DOE was carried out and the interference patterns were measured to evaluate the formability of GMP process. From the results, it was found that the cooling pressure is the most sensitive parameter for progressive GMP process.

고화소 카메라폰 모듈을 위한 Glass 렌즈 성형용 Silicon Carbide 코어의 초정밀 가공에 관한 연구 (A Study on Ultra Precision Grinding of Silicon Carbide Molding Core for High Pixel Camera Phone Module)

  • 김현욱;김정호;;곽태수;정상화
    • 한국정밀공학회지
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    • 제27권7호
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    • pp.117-122
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    • 2010
  • Recently, aspheric glass lens molding core is fabricated with tungsten carbide(WC). If molding core is fabricated with silicon carbide(SiC), SiC coating process, which must be carried out before the Diamond-Like Carbon(DLC) coating can be eliminated and thus, manufacturing time and cost can be reduced. Diamond Like Carbon(DLC) is being researched in various fields because of its high hardness, high elasticity, high durability, and chemical stability and is used extensively in several industrial fields. Especially, the DLC coating of the molding core surface used in the fabrication of a glass lens is an important technical field, which affects the improvement of the demolding performance between the lens and molding core during the molding process and the molding core lifetime. Because SiC is a material of high hardness and high brittleness, it can crack or chip during grinding. It is, however, widely used in many fields because of its superior mechanical properties. In this paper, the grinding condition for silicon carbide(SiC) was developed under the grinding condition of tungsten carbide. A silicon carbide molding core was fabricated under this grinding condition. The measurement results of the SiC molding core were as follows: PV of 0.155 ${\mu}m$(apheric surface) and 0.094 ${\mu}m$(plane surface), Ra of 5.3 nm(aspheric surface) and 5.5 nm(plane surface).

Solid Immersion Lens Microscope for Spectroscopy of Nanostructure Materials

  • Yim, Sang-Youp;Kim, Joon-Heon;Lee, Jong-Min
    • Journal of the Optical Society of Korea
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    • 제15권1호
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    • pp.78-81
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    • 2011
  • We demonstrate a high-spatial-resolution imaging and spectroscopy tool using a solid immersion lens (SIL), a hemispherical lens made of high refractive index glass (n ~2). Photoluminescence (PL) images of single CdSe nanocrystals confirm a numerical aperture enhancement factor of ~2, close to the refractive index of the SIL. In particular, a bare-eye observation of PL signals emitted by single nanocrystals with ${\sim}10\;{\mu}m^{-2}$ densities was possible over an ${\sim}30\;{\mu}m$ diameter region. In addition, the PL spectra of single CdSe nanocrystals were successfully measured at room temperature. Thus, this SIL microscope ensures a simple but powerful method for nanostructure spectroscopy.

유리렌즈 성형 금형의 나노 경면가공 (Study on nano-level mirror surface finishing on mold core to glass lens molding)

  • 곽태수;김경년;이용철
    • 한국정밀공학회지
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    • 제23권1호
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    • pp.97-104
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    • 2006
  • ELID(Electrolytic In-process Dressing) grinding is an excellent technique for mirror grinding of various advanced metallic or nonmetallic materials. A polishing process is also required for elimination of scratches present on ELID grinded surfaces. MAP(Magnetic Assisted Polishing) has been used as polishing method due to its high polishing efficiency and to its resulting in a superior surface quality. This study is describing an effective fabrication method combining ELID and MAP of nano-precision mirror grinding for glass-lens molding mould. It also presents some techniques for achieving the nanometer roughness of the hard metals, such as WC-Co, which are extensively used in precision tooling material.