• 제목/요약/키워드: $TiO_2-Al_2O_3$

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습식법에 의한 $Al_2$$O_3$-$TiO_2$복합체의 합성 및 특성연구 -1. $Al_2$$O_3$-$TiO_2$계 복합분체의 합성(1)- (Synthesis and Properties of $Al_2$$O_3$-$TiO_2$Composites by Wet Method -1. Synthesis of $Al_2$$O_3$-$TiO_2$Composite Powders-)

  • 류수착;엄지영
    • 한국세라믹학회지
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    • 제38권5호
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    • pp.412-417
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    • 2001
  • 본 연구는 습식법으로 수산화 알루미늄과 티타니아를 출발물질로 하여 $Al_2$O$_3$-TiO$_2$복합분체를 제조하였으며, 2 mol의 Al(OH)$_3$분말에 대하여 TiO$_2$분말량을 1, 3, 5, 7, 9, 11 wt%로 첨가하여 $Al_2$O$_3$-TiO$_2$복합분체의 특성을 조사하였다. 제조된 $Al_2$O$_3$-TiO$_2$계 복합분체는 $700^{\circ}C$~140$0^{\circ}C$까지 하소하여 XRD 분석을 한 결과 100$0^{\circ}C$까지는 TiO$_2$(rutile)상과 η-Al$_2$O$_3$상이 공존하다가 110$0^{\circ}C$부터 130$0^{\circ}C$까지는 η-Al$_2$O$_3$에서 $\alpha$-Al$_2$O$_3$로의 상전이가 일어나서 $\alpha$-Al$_2$O$_3$상과 TiO$_2$(rutile)상이 나타났으며 하소온도 140$0^{\circ}C$, TiO$_2$첨가량이 5 wt%일 때부터 $Al_2$TiO$_{5}$가 생성되기 시작하였다. TiO$_2$첨가량에 따른 비표면적값은 첨가량이 7 wt%까지는 감소하였으나 그 이상 첨가시 증가하였다. 입도분석 결과 평균입경은 15.74~23.21$mu extrm{m}$로서 TiO$_2$첨가량이 3 wt%일 때 가장 작은 값을 가졌으며 TiO$_2$첨가량은 5 wt% 이상부터 점차 감소하였다.

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습식법에 의한 Al2O3-TiO2 복합체의 합성 및 특성연구 I. Al2O3-TiO2 복합체의 기계적 특성(2) (Study on Properties of Al2O3-TiO2 Composites by Wet Method I. Mechanical Properties of Al2O3-TiO2 Composites(2))

  • 류수착
    • 한국세라믹학회지
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    • 제39권2호
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    • pp.153-158
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    • 2002
  • 습식법에 의하여 제조된 $Al_2O_3$-1∼11 wt% $TiO_2$계 복합체를 1350$^{\circ}C$, 1450$^{\circ}C$ 에서 2시간 열처리 한 후 이에 대한 기계적 물성변화 및 미세구조를 조사하였다. 그 결과, $TiO_2$ 첨가량이 3 wt%였을 때의 복합체가 bulk density도 높고 기공율도 낮은 치밀한 미세구조를 이루었으며 이 때 young's modulus는 35.5 GPa, 곡강도값은 68.7 MPa로서 다른 $TiO_2$ 첨가량에 비하여 우수한 물성을 나타내었다. $TiO_2$ 첨가량이 증가할 수록 많은 양의 aluminium titanate의 합성으로 인해 열팽창 계수는 낮은 값을 나타내었다.

ZnO Ceramic Varistor에 미치는 $TiO_2$$Al(OH)_3$의 영향 (A Study on the Effects of $TiO_2$ and $Al(OH)_3$ for ZnO Ceramic Varistor)

  • 안영필;김복희
    • 한국세라믹학회지
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    • 제19권4호
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    • pp.287-292
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    • 1982
  • Nonohmic properties of ZnO ceramics with various small amounts of additives were studied in relation to experimental methods, additive contant and sintaring temperature. The kinds of additives used to following chemicals were basic additives ($0.5Bi_2O_3$, $0.3BaCO_3$, $0.5MnCO_3$, $0.5Cr_2O_3$, $0.1KNO_3$), $TiO_2$ and $Al(OH)_3$. Expecially, this study has focused on the effectsof $TiO_2$ and $Al(OH)_3$ in ZnO ceramics with the basic additives. SEM studies indicated that the addition of TiO2 promoted grain growth but retarded grain growth with the addition of $Al(OH)_3$. Also, in the case of calcination of ZnO with $TiO_2$ and ZnO with $Al(OH)_3$ previously, grain size of ZnO with $TiO_2$ was larger and that of ZnO with Al(OH)3 was smaller in comparison to the case with out calcination. From the viewpoint of nonohmic exponent and nonohimic resistance, electrical characteristics of ZnO, $TiO_2$ and the basic additives was more effective than that of ZnO, $Al(OH)_3$ and the basic additives. Nonohmic exponent and nonohmic resistance of ZnO, $TiO_2$ and the basic additives was 11-13 and 40-65 respectively.

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SiC와 TiC 입자를 함유하는 Al2O3 입자복합체의 균열저항거동과 기계적 성질 (R-Curve Behavior and Mechanical Properties of Al2O3 Composites Containing SiC and TiC Particles)

  • 나상웅;이재형
    • 한국세라믹학회지
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    • 제39권4호
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    • pp.413-419
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    • 2002
  • $Al_2O_3$/TiC/SiC, $Al_2O_3$/SiC 및 $Al_2O_3$/TiC 복합체들을 고온가압소결로 제조하여 이들의 균열저항거동과 기계적 성질을 비교해 보았다. $Al_2O_3$$0.8{\mu}m$의 TiC가 30vol% 첨가된 $Al_2O_3$/TiC는 단일체 $Al_2O_3$와 비슷한 균열저항거동을 보이며 파괴인성은 전반적으로 10% 이내의 증가를 보이는데 그쳤지만 강도는 약 30% 증가하였다. $Al_2O_3$$3{\mu}m$ SiC가 30vol% 첨가된 $Al_2O_3$/SiC는 SiC 입자의 균열 접속으로 인해 증가하는 균열저항거동을 뚜렷이 보이면서 파괴인성이 긴 균열에서 약 75% 증가하였으나 강도는 다소 감소했다. $Al_2O_3$/TiC에 SiC 입자가 30 vol% 첨가된 $Al_2O_3$/TiC/SiC 복합체의 경우 단일체 $Al_2O_3$에 비해 긴 균열 거리에서 파괴인성이 50% 이상 증가된 6.6 MP${\cdot}\sqrt{m}$에 이르렀으며 강도 값도 약 20% 상승하였다. 그러나 큰 SiC 입자의 첨가로 인해 TiC 입자만 첨가된 $Al_2O_3$/TiC 복합체보다는 강도가 다소 낮았다. 또한 SiC 입자만 첨가된 $Al_2O_3$/SiC 복합체보다는 파괴인성이 다소 낮았는데, 이는 작은 TiC 입자들이 SiC 입계를 거칠게 만들어 균열접속을 일으키는 SiC 입자의 뽑힘 현상을 방해하였기 때문이다.

원자층 증착법에 의한 TiO2, Al2O3, 및 TiO2-Al2O3 나노라미네이트 박막이 316L Stainless Steel의 부식특성에 미치는 영향 (Corrosion Properties of Atomic Layer Deposited TiO2, Al2O3 and TiO2-Al2O3 Nanolaminated Film Coated 316L Stainless Steel)

  • 이우재;만지흠;김다영;장경수;최현진;최우창;권세훈
    • 한국표면공학회지
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    • 제50권1호
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    • pp.35-41
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    • 2017
  • $TiO_2$, $Al_2O_3$, and $TiO_2-Al_2O_3$ nanolaminated films were grown by atomic layer deposition (ALD) on the 316L stainless steel (SS316L) substrates at a temperature of $150^{\circ}C$. The growth kinetics of $ALD-TiO_2$ and $Al_2O_3$ thin films were systematically investigated in order to precisely control the thickness of each layers in the $TiO_2-Al_2O_3$ nanolaminated films using a high-resolution transmission electron microscopy. And, the exact deposition rates of $ALD-TiO_2$ on $Al_2O_3$ surface and $ALD-Al_2O_3$ on $TiO_2$ surface were revealed to be 0.0284 nm/cycle and 0.11 nm/cycle, respectively. At given growth conditions, the microstructures of $TiO_2$, $Al_2O_3$ and $TiO_2-Al_2O_3$ nanolaminated films were amorphous. The potentiodynamic polarization test revealed that the $TiO_2-Al_2O_3$ nanolaminated film coated SS316L had a best corrosion resistance, although all ALDcoated SS316L exhibited a clear improvement of the corrosion resistance compared with a bare SS316L.

$SrTiO_3$:Pr,Al 적색 형광체에서 TEM을 이용한 2차상의 관찰 (Observation of the Second Phases in a Red Phosphor $SrTiO_3$:Pr,Al by using Transmission Electron Microscopy)

  • 이정용;이호성;정연철;전덕영
    • 한국세라믹학회지
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    • 제38권3호
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    • pp.225-230
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    • 2001
  • 저전압용 형광체로 주목받고 있는 SrTiO$_3$:Pr,Al 형광체를 고상반응법으로 제조하였다. 부활성체 Al이 23 mol% 첨가되었을 때 SrTiO$_3$:Pr 형광체는 최대 발광 강도를 보여주었다. 최대 발광 강도를 보인 형광체에 대해 제한시야회절상과 투과전자현미경을 이용하여 SrTiO$_3$:Pr,Al 적색 형광체내 2차상 형성에 대한 연구를 행하였고 또한 에너지 분산 분광 분석을 행하여 SrTiO$_3$:Pr,Al 형광체내 주입된 부활성제 Al의 함량을 결정하였다. 제한시야회절상의 결과에 의하면 SrTiO$_3$:Pr,Al 적색 형광체내에 단사정 SrAl$_2$O$_4$, 삼사정 Ti$_4$O$_{7}$, 육방정 SrAl$_{12}$O$_{19}$가 2차상으로 존재함을 보여 주었다. 에너지 분산 분광 분석 결과 부활성제 Al의 함량 중 일부는 SrTiO$_3$:Pr,Al 적색 형광체 격자에 고용되고 일부 Al은 SrAl$_{12}$O$_{19}$와 SrAl$_2$O$_4$의 2차상을 형성하는데 소모됨을 보여주었다.주었다.

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SHS법을 이용한 복합분말(Al2O3-SiC) 제조시 TiO2첨가의 영향 (The effect of the addition of TiO2 in the preparation of (Al2O3-SiC)- SiC composite powder by SHS Process)

  • 윤기석;양범석;이종현;원창환
    • 한국재료학회지
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    • 제12권1호
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    • pp.48-53
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    • 2002
  • $Al_2O_3-SiC$ and $Al_2O_3-SiC$-TiC composite powders were prepared by SHS process using $SiO_2,\;TiO_2$, Al and C as raw materials. Aluminum powder was used as reducing agent of $SiO_2,\;TiO_2$ and activated charcoal was used as carbon source. In the preparations of $Al_2O_3-SiC$, the effect of the molar ratio in raw materials, compaction pressure, preheating temperature and atmosphere were investigated. The most important variable affecting the synthesis of $Al_2O_3-SiC$ was the molar ratio of carbon. Unreactants remained in the product among all conditions without compaction. The optimum condition in this reaction was $SiO_2$: Al: C=3: 5: 5.5, 80MPa compaction pressure under Preheating of $400^{\circ}C$ with Ar atmosphere. However there remains cabon in the optimum condition. The effect of $TiO_2$ as additive was investigated in the preparations of $Al_2O_3-SiC$. As a result of $TiO_2$ addition, $Al_2O_3-SiC$-TiC composite powder was prepared. The $Al_2O_3$ powder showed an angular type with 8 to $15{\mu}m$, and the particle size of SiC powder were 5~$10{\mu}m$ and TiC powder were 2 to $5{\mu}m$.

$Al_2O_3$ 로 피복시킨 세라믹 복합분체의 제조 및 특성 : (II) $Al_2O_3$-$TiO_2$ 복합분체 (Preparation and Characteristics of Ceramic Composite Powders Coated with $Al_2O_3$ : (II) Composite Powders of $Al_2O_3$-$TiO_2$)

  • 현상훈;정형구
    • 한국세라믹학회지
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    • 제28권4호
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    • pp.338-346
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    • 1991
  • The alumina-titania composite powders coated with Al2O3 were prepared by the method of hydrolysis-deposition of mixed aluminium salt solution of Al2(SO)4-Al(NO3)3-Urea. The effects of coating-process parameters on the characteristics of coated composite powders were also investigated. As the content of TiO2 dispersed in deionized water increased, the coated composite powders were found to be more uniform in size and unagglomerated. When TiO2 powders were coated for 30 min, the optimum TiO2 content in the coating process was 400 mg/ι. The size of TiO2 particle was increased approximately from 0.7${\mu}{\textrm}{m}$ to 1.0${\mu}{\textrm}{m}$ through coating of Al2O3. The IEP of coated composite powders was pH=8.3 identical to the value of aluminium hydroxides and the zeta-potential showed nearly similar values each other. When heat treating coated composite powders at 130$0^{\circ}C$, only two phases of TiO2(rutile) and Al2TiO5 were observed. These results showed that the suface of TiO2 could be uniformly coated with the aluminium hydroxide.

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Effect of Al2O3 Addition and WO3 Modification on Catalytic Activity of NiO/Al2O3-TiO2/WO3 for Ethylene Dimerization

  • Pae, Young-Il;Sohn, Jong-Rack
    • Bulletin of the Korean Chemical Society
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    • 제28권10호
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    • pp.1763-1770
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    • 2007
  • Strong solid acid catalysts, NiO/Al2O3-TiO2/WO3 for ethylene dimerization were prepared by the addition of Al2O3 and the modification with WO3. The acid sites and acid strength were increased by the inductive effect of WO3 species bonded to the surface of catalysts. The larger the dispersed WO3 amount, the higher both the acidity and catalytic activity for ethylene dimerization. The addition of Al2O3 to TiO2 up to 5 mol% enhanced acidity and catalytic activity gradually due to the interaction between Al2O3 and TiO2 and consequent formation of Al-O-Ti bond.

$BaTiO_3$ 세라믹스의 전기저항에 미치는 첨가제와 냉각속도의 영향: (II) $TiO_2$, $SiO_2$$Al_2O_3$ 복합첨가 (Effect of Additives and Cooling Rates on the Electrical Resistivity of $BaTiO_3$ Ceramics: (II) Multi-Component Systems of $TiO_2$, $SiO_2$ and $Al_2O_3$ Additives)

  • 염희남;하명수;이재춘;정윤중
    • 한국세라믹학회지
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    • 제28권10호
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    • pp.803-809
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    • 1991
  • Microstructure, room temperature resistivity and temperature coefficient of resistance of BaTiO3 ceramics were characterized and measured in this study. The basic composition of the BaTiO3 cremics was formed by adding 0.25 mol% Dy2O3 and 0.07 mol% MnO2 to the BaTiO3 composition. Samples of the BaTiO3 ceramics were prepared by adding various amounts of the TiO2, SiO2 and Al2O3 to the basic composition. An addition of 1 mol% TiO2, 2 mol% SiO2 and 0.5 mol% Al2O3 to the basic composition resulted both the values of the room temperature resistivity and the temperatured coefficient being maxium. Meanwhile, an addition of 1 mol% TiO2 and 1 mol% Al2O3 to the basic composition resulted the value of the room temperature resistivity maxium and the temperature coefficient minimum. The temperature coefficient showed a maximum value as well as a minimum value when the three kinds of the additives were added together to the basic composition of the BaTiO3 ceramics. Maxed phases of BaTi3O7, BaTiSiO5 and BaAl2Si2O8 were present at the grain boundary.

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