• 제목/요약/키워드: Low Iron Glass

검색결과 29건 처리시간 0.026초

태양광 모듈용 Glass의 투과율 향상을 위한 Coating 기술 개발 (Solar Module Glass Coating Technology for Improvement of the transmittance)

  • 정진수;정인성;이범수;장진호;반성태;김종일
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 춘계학술대회 초록집
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    • pp.120.1-120.1
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    • 2011
  • Increase the efficiency of PV modules for high-efficiency solar cells, light transmittance improvements, increasing the module, and much more research and development. Dual we light transmittance for photovoltaic module materials in low iron tempered glass in SiO2 using liquid AR implementation, light transmittance to solar modules to increase the efficiency of research.

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PV모듈 제조용 투명유리의 광학적 특성평가 분석 (The Optical Analysis of Transparent Glasses for PV Module Application)

  • 김경수;강기환;유권종
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2008년도 하계학술대회 논문집 Vol.9
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    • pp.179-180
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    • 2008
  • In this paper, we studied the optical property of transparent glasses for photovoltaic module manufacturing. The glass should have high mechanical and chemical resistance from outside environmental. Also optical transparency is a key requirement for better electrical performance. In here, we examine several kinds of transparent glasses and special purpose ones. This would give some real information for understanding PV module. The further analysis is described in the following paper.

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금속학적 분석을 통한 판상철부의 제작기술 연구 - 울산 하대고분 출토 유물을 중심으로 - (A Study on Flat Iron Axe Manufacturing Technology Using Metallurgical Analysis - Focused on the Artifacts Excavated from the Hadae Ancient Tombs in Ulsan -)

  • 조하늬;유하림;이재성
    • 헤리티지:역사와 과학
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    • 제52권3호
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    • pp.240-251
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    • 2019
  • 울산 하대고분에서 출토된 판상철부의 미세조직을 금속학적 방법으로 분석하여 제작기술을 살펴보았다. 또한 기존의 판상철부 연구자료와 비교 및 검토하여 판상철부에 적용된 다양한 제작기술을 파악하였다. 울산 하대고분 44호 목곽묘에서 나란히 배열된 상태로 출토된 판상철부 10점을 과학적으로 분석한 결과, 판상철부의 제작기술 체계를 '(1) 순철-형태 가공, (2) 순철-형태 가공-침탄, (3) 순철-형태 가공-침탄-탈탄' 세 가지 유형으로 분류할 수 있었다. 판상철부는 모두 단조에 의해 제작되었고, 순철을 소재로 두드려 형태를 만들었다. 특히 다수의 판상철부는 형태 가공 후 침탄 처리를 통해 재질을 강화시켰는데, 이는 중간 소재 또는 화폐로 통용됨으로써 당시 제철산업의 근간을 이루었던 철강 제품인 것으로 보인다. 한편 형태 가공이나 침탄 이후에는 담금질이 실시되지 않았다는 공통점을 가진다. 순철을 소재로 제작한 판상철부의 미세조직에는 불순 개재물이 다량 포함되어 있고, 비금속 개재물을 성분 분석한 결과, 유리상과 뷔스타이트가 함께 혼재한 철재(鐵滓)의 특징을 보여주므로 제련 공정에서 저온환원법이 적용되었을 가능성이 크다.

대구경 상수도관 부식 손상부의 고분자 필러와 복합슬리브 성능 평가 (Performance assessment of polymeric filler and composite sleeve technique for corrosion damage on large-diameter water pipes)

  • 이호민;박정수;박정주;배철호
    • 상하수도학회지
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    • 제37권4호
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    • pp.203-214
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    • 2023
  • In this study, the physical properties and fracture characteristics according to the tensile load are evaluated on the materials of the polymeric filler and carbon fiber-based composite sleeve technique. The polymeric filler and the composite sleeve technique are applied to areas where the pipe body thickness is reduced due to corrosion in large-diameter water pipes. First, the tensile strength of the polymeric filler was 161.48~240.43 kgf/cm2, and the tensile strength of the polyurea polymeric filler was relatively higher than that of the epoxy. However, the tensile strength of the polymeric filler is relatively very low compared to ductile cast iron pipes(4,300 kgf/cm2<) or steel pipes(4,100 kgf/cm2). Second, the tensile strength of glass fiber, which is mainly used in composite sleeves, is 3,887.0 kgf/cm2, and that of carbon fiber is up to 5,922.5 kgf/cm2. The tensile strengths of glass and carbon fiber are higher than ductile cast iron pipe or steel pipe. Third, when reinforcing the hemispherical simulated corrosion shape of the ductile cast iron pipe and the steel pipe with a polymeric filler, there was an effect of increasing the ultimate tensile load by 1.04 to 1.06 times, but the ultimate load was 37.7 to 53.7% compared to the ductile cast iron or steel specimen without corrosion damage. It was found that the effect on the reinforcement of the corrosion damaged part was insignificant. Fourth, the composite sleeve using carbon fiber showed an ultimate load of 1.10(0.61T, 1,821.0 kgf) and 1.02(0.60T, 2,290.7 kgf) times higher than the ductile cast iron pipe(1,657.83 kgf) and steel pipe(2,236.8 kgf), respectively. When using a composite sleeve such as fiber, the corrosion damage part of large-diameter water pipes can be reinforced with same level as the original pipe, and the supply stability can be secured through accident prevention.

비정질 알칼리 규산염 원자구조의 철 함량 효과에 관한 고체 NMR 분광학 연구 (The Effect of Iron Content on the Atomic Structure of Alkali Silicate Glasses using Solid-state NMR Spectroscopy)

  • 김효임;이성근
    • 한국광물학회지
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    • 제24권4호
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    • pp.301-312
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    • 2011
  • 철을 포함한 비정질 규산염 용융체의 원자 구조 규명은 지표 환경의 화성활동 및 맨틀 심부의 초저속도층의 속도구조에 이르는 광범위한 지질과정의 미시적인 원인에 대한 단서를 제공한다. 본 연구에서는 철을 포함한 비정질 규산염의 원자 구조 규명에 가장 적합한 고상 핵자기공명분광분석(NMR)을 이용하여 최대 16.07 wt%의 $Fe_2O_3$가 포함된 비정질 알칼리 규산염(iron-bearing alkali silicate glasses)의 철의 함량 변화가 원자구조에 미치는 영향을 규명하였다. $^{29}Si$ 스핀-격자 완화시간($T_1$)을 측정한 결과, 철의 함량에 따라 스핀-격자 완화시간이 짧아지는데 이는 철이 가지고 있는 홀전자(unpaired electron)와 핵 스핀(nuclear spin)간의 상호작용으로부터 기인한다. $^{29}Si$ MAS NMR 실험 결과, 철이 포함되지 않은 시료의 경우 $Q^2$, $Q^3$ 그리고 $Q^4$의 환경을 지시하는 피크가 분리됨에 반하여, 철이 포함된 시료의 경우 NMR 신호의 급격한 감소와 피크 폭이 넓어짐으로써 각각의 규소 환경이 거의 분리되지 않았다. 그러나 철의 함량에 따라 스펙트럼이 넓어지고 화학적 차폐값(chemical shift)이 높아지는 현상을 확인하였는데, 이는 $Q^4$의 규소 환경을 나타내는 방향으로서 철 주변의 $Q^n$이 불균질하게 분포하고 있음을 지시한다. $^{17}O$ MAS NMR 실험에서도 철이 포함되지 않은 시료에서는 연결산소(Si-O-Si)와 비연결산소(Na-O-Si)가 부분적으로 분리되지만, 철의 함량이 증가하면서 각각의 산소 환경이 거의 분리되지 않는다. 이러한 연구결과는 고상 핵자기공명분광분석이 철을 포함한 비정질 규산염의 상세한 구조 연구에 효과적인 도구임을 지시한다.

폐플라스틱의 선별기술 (Methods of Separating Used Plastics for Recycling)

  • 윤여환
    • 자원리싸이클링
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    • 제6권2호
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    • pp.12-21
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    • 1997
  • Plastics waste constitutes approximately 23% by volume of the municipal solid waste(MSW) generated in the U.S. each year, and have slow rate of degradation in the environment. Therefore, there is a great deal of public pressure to recycle plastics, and more than 100 million people participate in the curbside recycling programs. Despite the high level of public interest, only 3.5% of the plastic are recycled, which is substantially lower than the recycle rates of other materials such as paper fibers, glass, and iron. Although a large part of the reason is due to the low price of virgin polymers, which in turn is due to the low price of oil, it is possible to make the plastics recycling as a profitable business by developing advanced technologies. In this communication, various methods of separating pplastics from metals and from each other are discussed.

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Fabrication of Ordered or Disordered Macroporous Structures with Various Ceramic Materials from Metal Oxide Nanoparticles or Precursors

  • Cho, Young-Sang;Moon, Jun-Hyuk;Kim, Young-Kuk;Choi, Chul-Jin
    • 한국분말재료학회지
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    • 제18권4호
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    • pp.347-358
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    • 2011
  • Two different schemes were adopted to fabricate ordered macroporous structures with face centered cubic lattice of air spheres. Monodisperse polymeric latex suspension, which was synthesized by emulsifier-free emulsion polymerization, was mixed with metal oxide ceramic nanoparticles, followed by evaporation-induced self-assembly of the mixed hetero-colloidal particles. After calcination, inverse opal was generated during burning out the organic nanospheres. Inverse opals made of silica or iron oxide were fabricated according to this procedure. Other approach, which utilizes ceramic precursors instead of nanoparticles was adopted successfully to prepare ordered macroporous structure of titania with skeleton structures as well as lithium niobate inverted structures. Similarly, two different schemes were utilized to obtain disordered macroporous structures with random arrays of macropores. Disordered macroporous structure made of indium tin oxide (ITO) was obtained by fabricating colloidal glass of polystyrene microspheres with low monodispersity and subsequent infiltration of the ITO nanoparticles followed by heat treatment at high temperature for burning out the organic microspheres. Similar random structure of titania was also fabricated by mixing polystyrene building block particles with titania nanoparticles having large particle size followed by the calcinations of the samples.

태양광 모듈 오염 방지를 위한 발수 코팅 물질에 대한 연구 (Research on Water-Repellent Coating Materials to Prevent Solar Module Pollution )

  • 박영아;정다연;기현철
    • 한국전기전자재료학회논문지
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    • 제37권2호
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    • pp.182-187
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    • 2024
  • Currently, the most developed new energy source is solar energy. Because solar power is installed outside, it is exposed to many pollutants. Pollutants are causing the characteristics of solar energy to deteriorate. Therefore, this study aims to develop a water-repellent coating to prevent contamination of solar modules. Silica and Titania materials are mainly used as water-repellent coating materials. In this study, it was based on silica and the contact angle characteristics were measured according to the change in the amount of silica and ammonia water added and the number of coatings. As a result of the measurement, it was confirmed that the contact angle was more than 60 degrees when 0.5 mol of TEOS was added to 50 mL and 0.15 M when 1 mL of ammonia water was added to 296.47 ml of distilled water. And it was confirmed that the contact angle improved when the number of coatings was applied twice. A water-repellent coating material was applied to low iron tempered glass used to protect dye-sensitized solar cell modules. The characteristics of the module were measured after spraying DI-Water on low-emission tempered glass with a water-repellent coating. As a result of the measurement, the efficiency of the module without application, the efficiency of the module coated once, and the module coated twice were 4.87%, 4.90%, and 4.91%, respectively. It was confirmed that the efficiency of the module increased by applying water-repellent coating. As a result of this study, it is determined that the water-repellent coating material will help improve solar power generation efficiency and lifespan by being self-cleaning and non-reflective.

국가등록문화재 공주제일교회 스테인드글라스 구조재의 재질특성과 물성 평가 (Evaluation of Physical Properties and Material Characterization for Structural Frame at the Stained Glass Windows to Gongju Jeil Church of the Registered Cultural Heritage in Korea)

  • 박보영;양혜리;이찬희
    • 자원환경지질
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    • 제56권1호
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    • pp.103-114
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    • 2023
  • 공주제일교회 기독교박물관은 1931년에 초축되었으며 한국전쟁으로 상당 부분 파손되었으나 벽체와 굴뚝 등이 보존되었다. 이 건물은 1956년 예배당을 재건하며 신축이 아닌 파손된 부분의 보수를 통해 원형을 유지하고 있다는 점에서 건축학적으로 높은 가치가 있다. 스테인드글라스는 1979년에 설치하였으며, 덩어리유리를 사용하는 달드베르(Dalle de Verre) 방식으로 큰 의미가 있다. 그러나 일부 스테인드글라스에서는 다양한 균열과 쪼개짐이 나타나고 색유리를 지지하는 줄눈에는 수직 및 수평균열이 확인되는 등 부분적인 손상을 입었다. 스테인드글라스의 구조재로는 철제 틀과 이를 충전한 시멘트 모르타르가 사용되었으며, 부분적으로 풍화작용에 따라 철제의 부식과 모르타르의 균열 및 입상분해가 나타난다. 줄눈재에서는 Ca과 S의 함량이 높아 석고를 혼화재로 사용하였음을 지시하며, 석고는 능형으로 성장하며 다발모양을 이루고 있는 것으로 보아 재결정작용을 거친 것으로 판단된다. 줄눈재의 초음파속도 모델링 결과, 입구 좌우창의 속도는 800~1,600㎧ 범위로 상대적으로 취약하며, 제단의 좌창 우측 하단과 중앙창 좌측 상단도 1,000~1,800㎧로 나타나 상대적으로 낮은 물성을 보였다. 또한 줄눈재와 표면오염물에서는 석회 모르타르의 중성화에서 생성되는 석고화합물이 검출되었다. 이와 같은 염류는 동결 및 융해작용에 따라 줄눈재의 손상을 일으킬 수 있어 적절한 예방보존이 필요하다. 스테인드글라스와 줄눈재에는 다양한 손상유형이 복합적으로 나타나고 있어 임상실험을 통해 맞춤형 보존처리를 검토해야 할 것이다.

ETFE 필름을 적용한 태양광 모듈의 전기적 출력 및 신뢰성에 관한 연구 (Electrical Output and Reliability of Photovoltaic Module Using Ethylene Tetrafluoroethylene Film)

  • 신우균;임종록;고석환;강기환;주영철;황혜미
    • 한국태양에너지학회 논문집
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    • 제40권4호
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    • pp.13-22
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    • 2020
  • As the supply of photovoltaic (PV) increases worldwide, the cumulative installations in 2018 were 7.9 and 560 GW in Korea and the world, respectively. Typically, when the ground on commercial PV modules is installed, the area is limited; hence, new designs of PV modules are required to install additional PVs. Among the new design of PV modules, lightweight PV modules can be utilized in PV systems, such as buildings, farmlands, and floating PV. Concerning the investigation of lightweight PV modules, several studies on materials for replacing low-iron tempered glass, which comprises approximately 65% of the PV module weight, have been conducted. However, materials that are used as substitutes for glass should possess similar lightweight properties and reliability as glass. In this study, experimental tests were performed to evaluate the applicability of ethylene tetrafluoroethylene (ETFE) film with excellent resistance to water and aging as a front material of PV modules. The transmittance and ultraviolet properties of the ETFE film were determined and compared with those of glass. A 1-cell module and laboratory-scale 24-cell module were manufactured using the ETFE film and glass, and the electrical output was measured and analyzed. Furthermore, damp heat and thermal cycle tests were conducted to evaluate the reliability of the ETFE film module. Based on the experimental results, the electrical output and reliability of the ETFE film module were similar to those of the glass module, and the ETFE film could be used as the front material of PV modules.