• Title/Summary/Keyword: Water-$Al_2O_3$

검색결과 561건 처리시간 0.026초

졸-겔 방법에 의한 $Li_2O-Al_2O_3-SiO_2$계 저열팽상성 결정화유리의 제조 (Preparation of Ultra-Low Thermal Expansion L$i_2$O-A$l_2$$O_3$-Si$O_2$ Glass-Ceramics by Sol-gel Technique)

  • 양중식;김종범;양중식
    • 한국재료학회지
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    • 제3권3호
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    • pp.207-214
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    • 1993
  • $Li_2O-Al_2O_3-SiO_3$계 결정화유리의 저온합성을 위하여 출방원료로서 각 해당 금속 알콕시드를 사용하였다. 알코올을 용매로 충분히 첨가하고, drying control chemical additive로 dimethy1 formamide를 적당량 첨가한 혼합용용액을 과잉의 물로 충분히 가수분해시킨 습윤겔을 저온으로 건고하여 균열이 없는 건조된 monolith겔을 합성하였다. 건조겔로부터 750-$950^{\circ}C$로 10시간 이상 소결하여 저열팽창성을 나타내는 ${\beta}$-eucrypytite(${\beta}$-quartz 고용체), $Li_2O\cdot Al_2O_3\cdot 3SiO_2$${\beta}$-spodumene등의결정상을 석출시켰다.

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결정성 아날심(|Na0.94(H2O)|[Si2.06Al0.94O6]-ANA)의 합성 및 단결정구조: 양이온 및 물 분자의 위치, Si/Al 비의 결정 (Synthesis of Single Crystalline Analcime and Its Single-crystal Structure, |Na0.94(H2O)|[Si2.06Al0.94O6]-ANA: Determination of Cation Sites, Water Positions, and Si/Al Ratios)

  • 서성만;서정민;고성운;임우택
    • 대한화학회지
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    • 제55권4호
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    • pp.570-574
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    • 2011
  • 최대 0.20 mm 크기를 가진 아날심 단결정은 $3.00SiO_2$ : $1.50NaAlO_2$ : 8.02NaOH : $454H_2O$ : 5.00TEA의 겔 조성으로부터 합성되어졌다. $Na^+$ 이온으로 완전히 이온교환 된 아날심은 0.1 M 농도의 NaCl 수용액으로부터 준비하였다(이온교환용액의 pH는 NaOH 용액을 첨가하여 6에서 11로 맞추었다). $|Na_{0.94}(H_2O)|[Si_{2.06}Al_{0.94}O_6]-ANA(a=13.703(3){\AA})$의 분자식을 가지는 수화된 아날심 단결정의 구조는 294 K에서 Ibca의 orthorhombic 공간군으로 단결정 X-선 회절기법에 의해 결정되었다. 결정 구조의 최종 에러값은 $R_1/wR_2$= 0.054/0.143에 수렴되었다. 약 15개의 $Na^+$ 이온이 팔면체 배위로 3군데의 비동등한 위치에서 발견되었다. 합성된 아날심의 화학적 조성은 $Na_{0.94}(H_2O)Si_{2.06}Al_{0.94}O_6$ 확인되었으며, Si/Al 비는 단결정 구조 정밀화를 통하여 찾은 양이온의 점유수인 14.79개에 의해 2.19로 결정되었다.

시간경과, 교반 및 분산제 첨가에 따른 물-Al2O3 나노유체 열전도도 변화에 관한 실험적 연구 (An Experimental Study on Thermal Conductivity Change of Water-Al2O3 Nanofluid with the Elapse of Time, Stirring, and Adding Dispersing Agent)

  • 박동욱;박창용
    • 한국생산제조학회지
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    • 제22권3_1spc호
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    • pp.537-543
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    • 2013
  • A water-$Al_2O_3$ nanofluid was manufactured, and its thermal conductivity was measured in this study. The measurement was performed at volumetric concentrations of 0.5%, 1%, 2%, and 3%, and the nanoparticle sizes were 20 nm and 70 nm. Experimental test equipment, using the transient hot wire method, was installed to measure the thermal conductivity of the nanofluid, and the measured results were confirmed by measuring pure water with a measurement error of 0.92% at $20^{\circ}C$. The thermal conductivity enhancement ranged from 4.8% to 13.6% for the 20 nm particle size, and from 3.1% to 8.8% for the 70 nm particle size at a concentration range of 0.5% to 3%. The enhancement increased with a decrease in particle size and an increase in concentration. With the elapse of time after manufacturing the nanofluid, the thermal conductivity enhancement decreased significantly from 5 to 9 h, and this trend was measured under all of the measurement conditions. After 24 h, the enhancement ranged from 1.2% to 3.5% for the 20 nm particles, and from 0.6% to 2.3% for the 70 nm particles. The enhancement trends with the elapse of time were almost identical with and without stirring the nanofluid. SDBS (Sodium Dodecyl Benzene Sulfonate) was added as a dispersing agent, and the decrease in the thermal conductivity enhancement was delayed.

CaAl-monosulfate와 CaAl-ettringite를 이용한 인공비소폐수의 비소 제거 연구 (Arsenic removal from artificial arsenic water using CaAl-monosulfate and CaAl-ettringite)

  • 심재호;김기백;최원호;박주양
    • 상하수도학회지
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    • 제26권1호
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    • pp.141-148
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    • 2012
  • 시멘트를 이용한 고형화/안정화의 여러 기작 중 시멘트 페이스트의 구성물인 monosulfate와 ettringite에 초점을 맞춰 이들을 각 각 합성하고 인공비소폐수에서의 비소 제거 실험을 실시했다. 소성과 중탕 과정을 거쳐 $Ca^{2+}$$Al^{3+}$이 mainlayer를 이루고 있으며, $SO_4^{2-}$가 interlayer에 삽입되어 있는 CaAl-monosulfate와 $Ca^{2+}$$Al^{3+}$가 column형태의 구조로, $SO_4^{2-}$가 channel형태로 구성되어 있는 CaAl-ettringite를 합성했다. 순수하게 합성된 시료로 1.335 mmol/L As(V) 농도의 수용액을 각각 0.054 mmol/L As(V)와 0.300 mmol/L As(V)까지 감소시켰다. PXRD와 FESEM을 이용하여 반응 전 후의 시료 결정 구조와 상 분석을 행함으로써 이온교환에 의해 인공비소폐수의 비소가 제거 된 것을 알 수 있었다.

NaOH 자극에 의한 고노수쇄 슬래그의 수화반응 (Hydration of Granulated Blast Furnace Slag in the Presence of NaOH)

  • 송종택;대문정기(大門正機);근등련일(近藤連一)
    • 한국세라믹학회지
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    • 제17권3호
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    • pp.158-162
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    • 1980
  • The experiments of suspension hydration were performed in the mixtures of slag and water or NaOH solutions which were made up with a liquid/solid ratio of 10. The liquid phase of the suspension was chemically analysed and discussed. When slag was in contact with water, CaO component was released from slag grains into the solution. The amounts of $SiO_2$ and $Al_2O_3$ liberated in the solution were very low as compared with CaO, for the impermeable coating of $SiO_2$, $Al_2O_3$-rich gel was formed on the surface of slag grains. The hydration was considered to be inhibited by this impermeable coating. The weak hydraulic property of slag was based on slowly released CaO and dissolved Na, K components which increased pH in the solution.

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미스트화학기상증착시스템의 전구체 수용액 혼합비 조절을 통한 (AlxGa1-x)2O3 에피박막의 밴드갭 특성 제어 연구 (Bandgap Control of (AlxGa1-x)2O3 Epilayers by Controlling Aqueous Precursor Mixing Ratio in Mist Chemical Vapor Deposition System)

  • 김경호;신윤지;정성민;배시영
    • 한국전기전자재료학회논문지
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    • 제32권6호
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    • pp.528-533
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    • 2019
  • We investigated the growth of $(Al_xGa_{1-x})_2O_3$ thin films on c-plane sapphire substrates that were grown by mist chemical vapor deposition (mist CVD). The precursor solution was prepared by mixing and dissolving source materials such as gallium acetylacetonate and aluminum acetylacetonate in deionized water. The [Al]/[Ga] mixing ratio (MR) of the precursor solution was adjusted in the range of 0~4.0. The Al contents of $(Al_xGa_{1-x})_2O_3$ thin films were increased from 8 to 13% with the increase of the MR of Al. As a result, the optical bandgap of the grown thin films changed from 5.18 to 5.38 eV. Therefore, it was determined that the optical bandgap of grown $(Al_xGa_{1-x})_2O_3$ thin films could be effectively engineered by controlling Al content.

Heat transfer enhancement of nanofluids in a pulsating heat pipe for heat dissipation of LED lighting

  • Kim, Hyoung-Tak;Bang, Kwang-Hyun
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권10호
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    • pp.1200-1205
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    • 2014
  • The effect of nanofluids on the heat transfer performance of a pulsating heat pipe has been experimentally investigated. Water-based diamond nanofluid and aluminium oxide ($Al_2O_3$) nanofluid were tested in the concentration range of 0.5-5%. The pulsating heat pipe was constructed using clear Pyrex tubes of 1.85 mm in inner diameter in order to visualize the pulsating action. The total number of turns was eight each for heated and cooled parts. The supply temperatures of heating water and cooling water were fixed at $80^{\circ}C$ and $25^{\circ}C$ respectively. The liquid charging ratio of the nanofluid was 50-70%. The test results showed that the case of 5% concentration of diamond nanofluid showed 18% increase in heat transfer rate compared to pure water. The case of 0.5% concentration of $Al_2O_3$ nanofluid showed 24% increase in heat transfer rate compared to pure water. But the increase of $Al_2O_3$ nanofluid concentration up to 3% did not show further enhancement in heat transfer. It is also observed that the deposited nanoparticles on the tube wall played a major role in enhanced evaporation of working fluid and this could be the reason for the enhancement of heat transfer by a nanofluid, not the enhanced thermal conductivity of the nanofluid.

Sol-Gel법에 의한 Li2O-Al2O3-SiO2계 괴상겔 및 결정화유리의 합성 (Synthesis of Monolithic Gel to Bulk glass-Ceramic in Multicomponent Li2O-Al2O3-SiO2 System)

  • 양중식;작화제부
    • 한국세라믹학회지
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    • 제25권5호
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    • pp.541-551
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    • 1988
  • The purpose of this investigation was to prepare multicomponent monolithic Li-Al-Si gels of composition(mol%) 16.67 Li2O-16.67 Al2O3-66.67 SiO2 and to convert the gels to monolithic glass-ceramic at low temperature without melting. The hydrolysis, DTA, TGA, TMA, SEM, pore distribution, density and the activation energy for crystallization of the glass-ceramic formation with rawmaterials of which tetraethl orhosilicate of networkforming cation(Si) is partially hydrolyzed, aluminum isoproxide and lithium methoxide prepared by Li-metal react with methanol were studied. The results were as follows : 1) Monolithic gels which were added with additional water, resulting in a total water content 2.5 to 3.0 times the stoichiometric amount required to fully hydrolyze the alkoxides. 2) Specimens were dried to form crylinders 60mm in length and 40mm in diameter in about 800 hrs at 5$0^{\circ}C$. 3) $\beta$-eucryptite crystals and $\beta$-spodumene crystals were detected in samples heated above 75$0^{\circ}C$. 4) Within the temperature and range of 25-50$0^{\circ}C$ and 1,00$0^{\circ}C$ the thermal expansion coefficient for crystallized samples were shown as 2.6-5.7$\times$10-7/$^{\circ}C$ and 7.4-12.5$\times$10-7/$^{\circ}C$, respectively. 5) The activation energy for the crystal growth was 11.01kcal/mol at 794$^{\circ}C$ to 85$0^{\circ}C$.

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Characteristics of the AlON-Al2O3 Ceramic Coatings on the Al2021 Alloy by Electrolytic Plasma Processing

  • Wang, Kai;Byeon, Sang-Sik;Kim, Geun-Woo;Park, Keun-Young;Ahmed, Faheem;Koo, Bon-Heun
    • 한국재료학회지
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    • 제22권3호
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    • pp.155-158
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    • 2012
  • In this work, AlON-$Al_2O_3$ coatings were prepared on Al2021 alloy by the electrolytic plasma processing (EPP) method. The experimental electrolytes include: 2 g/l NaOH as the electrolytic conductive agent, 10 g/l $Na_2AlO_2$ as the alumina formative agent, and 0.5 g/l $NaNO_2$, $NaNO_3$, and $NH_4NO_3$ as the nitride inducing agents. The effects of different nitrogen inducing agents were studied by a combined compositional and structural analyses of the ceramic coatings carried out by Xray diffractometry (XRD) and scanning electron microscopy (SEM) for the specimens EPP-treated at room temperature for 15 min under a hybrid voltage of 260 DC along with an AC 50 Hz power supply (200 V). Microhardness tests and wear tests were carried out to correlate the evolution of the microstructure and the resulting mechanical properties. Potentiodynamic polarizations and immersion corrosion tests were carried out in 3.5wt% NaCl water solutions under static conditions in order to evaluate the corrosion behavior of the coated samples. The results demonstrate that $NaNO_2$ is proven to be a good nitrogen inducing agent to produce high quality AlON-$Al_2O_3$ ceramic coatings.

ALD방법으로 ZnO 나노와이어에 코팅된 $Al_2O_3$ 박막 ($Al_2O_3$ films coated on ZnO nanowires by ALD method)

  • 황주원;김기현;강명일;이종수;민병돈;김상식
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2002년도 추계학술대회 논문집 전기물성,응용부문
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    • pp.79-81
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    • 2002
  • ZnO 나노와이어는 ZnO 파우더를 볼밀 처리하여 열증착 방법으로 $1380^{\circ}C$에서 촉매없이 Si 기판위에서 합성되었다. 합성된 ZnO 나노와이어의 길이와 직경은 $20{\sim}30{\mu}m$$50{\sim}200$ nm 였다. ZnO 나노와이어 표면을 atomic layer deposition(ALD) 방법으로 $Al_2O_3$ 박막을 얇게 코팅하였다. 성장온도는 $300^{\circ}C$였고, 사용한 전구체는 Trimethlaluminum(TMA)와 distilled water($H_2O$) 이다. Transmission electron microscopy(TEM) 으로 측정한 $Al_2O_3$ 박막의 두께는 40 nm 로서 매우 균일하게 ZnO 나노와이어에 증착되었음을 알 수 있었다.

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