• 제목/요약/키워드: ${\beta}$-Al2O3

검색결과 245건 처리시간 0.026초

정방정 $ZrO_2$의 첨가가 $\alpha$-Alumina/La-\beta-Aluminate $ 복합체의 기계적 성질에 미치는 영향 (Effect of Tetragonal $ZrO_2$ Addition on the Mechanical Properties of $\alpha$-Alumina/La-\beta-Aluminate $Composite)

  • 강석원;김해두;김신;이수영;박동수
    • 한국세라믹학회지
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    • 제31권5호
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    • pp.513-519
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    • 1994
  • In-situ 반응에 의하여 형성된 La-$\beta$-aluminate (LaAl11O18)로 강화된 알루미나 복합체에 정방정 ZrO2를 첨가하여 알루미나 복합체를 제조하였다. 사용된 분말 혼합체의 조성은 (100-x)[88 Al2O3+(La2O3+11 Al2O3)]+x vol% ZrO2였으며, x는 0부터 40까지 변화시켰다. 열간가압형성에 의하여 얻어진 치밀한 소결체는 1200MPa의 곡강도값을 나타내었다. 이러한 높은 곡강도값은 첨가한 ZrO2 입자와 기존의 La-$\beta$-aluminate platelets의 기지 입자에 대한 입성장 억제 효과와 ZrO2의 응력유기 상변태 효과로부터 기인하였다. 상기 복합체의 파괴 인성도 역시 8.58.5 MPa.m1/2까지 증가하였는데, 이러한 파괴인성의 증가는 ZrO2의 상변태 강화와 미세균열 강화, 그리고 La-$\beta$-aluminate와 ZrO2 입자의 균열 deflection과 bridging의 효과로 설명되어질 수 있다.

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고상반응법에 의한 Fe-Al-Si-Ti-O계 써어미스터 소결체 합성 (Fabrication of Sintered Thermistor Body of Fe-Al-Si-O System by Solid Reaction Method)

  • 감기술;강기훈
    • 한국재료학회지
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    • 제1권4호
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    • pp.198-205
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    • 1991
  • $Fe_2O_3,\;Al_2O_3,\;TiO_2$ 및 Si분말을 사용하여 고상반응법으로 써어미스터 소결체를 합성하였다. 합성된 소결체의 조식특성을 SEM으로 조사하고, 액체항온조에서 $-50~+50^{\circ}C$ 온도영역에서의 측정 결과 $\beta$상수가 972~4005K의 값을 갖는 써어미스터 소결체를 얻었다. 이 소결체는 고공기온측정을 위한 라디오존데용 온도센서로 사용될 수 있다.

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무가압 소결법에 의한 $\beta$-SiC-$ZrB_2$편(偏) 도전성(導電性) 복합체(複合體) 미치는 기공(氣孔)의 영향 (Effects of Porosity on the Properties of Pressureless Sintered $\beta$-SiC-$ZrB_2$ Electroconductive Ceramic Composites)

  • 주진영;권주성;신용덕
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1997년도 추계학술대회 논문집 학회본부
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    • pp.311-313
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    • 1997
  • The effects of porosity on the pressureless sintered $\beta$-SiC-$ZrB_2$ composites with $Al_2O_3$ additions(4, 8, 12wt.%) under argon atmosphere were investigated. Relative density of $\beta$-SiC-$ZrB_2$ composites were decreased with the $Al_2O_3$ content. The relative density and fracture toughness of $\beta$-SiC-$ZrB_2$ with 4wt% $Al_2O_3$ are 93.2%, $1.323MPa{\cdot}m^{1/2}$ respectively. The Vicker's hardness and flexural strength of $\beta$-SiC-$ZrB_2$ with 12wt.% $Al_2O_3$ are 0.492GPa, 261MPa respectively. Fracture toughness of $\beta$-SiC-$ZrB_2$ composites are directly proportional to relative density.

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無加壓 열처리에 의한 ${\beta}$-SIC-TiB$_2$ 複合體의 製造와 特性 (Manufacture and Properties of ${\beta}$-SIC-TiB$_2$ Composites Densified by Pressureless Annealing)

  • 신용덕;주진영;박미림
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제50권5호
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    • pp.221-225
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    • 2001
  • The effect of $Al_2O_3+Y_2O_3$ additives on fracture toughness of ${\beta}-SiC-TiB_2$ composites by hot-pressed sintering was investigated. The ${\beta}-SiC-TiB_2$ ceramic composites were hot-press sintered and pressureless-annealed by adding 16, 20, 24 wt% ${\beta}-SiC-TiB_2$(6:4 wt%) powder as a liquid forming additives at low temperature(1800 $^{\circ}C$) for 4 h. Phase analysis of composites by XRD revealed mostly of ${\alpha}$-SiC(6H), $TiB_2$, and YAG($Al_5Y_3O_{12}$). The relative density was over 95-88 % of the theoretical density, and the porosity increased with increasing $Al_2O_3+Y_2O_3$ contents because of the increasing tendency of pore formation. The fracture toughness showed the highest value of 5.88 MPa${\cdot}m^{1/2}$ for composites added with 20 wt% $Al_2O_3+Y_2O_3$ additives at room temperature. The electrical resistivity showed the lowest value of $5.22{\times}10^{-4}\;{\Omega}\;{\cdot}\;cm$ for composite added with 20 wt% $Al_2O_3+Y_2O_3$ additives at room temperature, and was all positive temperature coefficeint resistance(PTCR) against temperature up to 900 $^{\circ}C$.

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$\beta$-Sic-$TiB_2$복합체의 파괴인성과 전기전도도젠 미치는 YAG의 영향 (Effect of the YAG with fracture toughness and electric conductive of $\beta$-Sic-$TiB_2$)

  • 윤세원;주진영;신용덕;여동훈;박기엽
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 C
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    • pp.1545-1547
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    • 2000
  • The mechanical and electrical properties of the hot-pressed and annealed $\beta$-Sic-$TiB_2$ electroconductive ceramic composites were investigated as function of the liquid forming additives of $Al_{2}O_{3}+Y_{2}O_3$. Phase analysis of composites by XRD revealed $\alpha$-SiC(6H), $TiB_2$, and YAG($Al_{5}Y_{3}O_{12}$). The relative density and the mechanical properties of composites were increased with increasing $Al_{2}O_{3}+Y_{2}O_3$ contents because YAG of reaction between $Al_{2}O_3$ and $Y_{2}O_3$ was increased. The Flexural strength showed the highest value of 432.5MPa for composites added with l2wt% $Al_{2}O_{3}+Y_{2}O_3$ additives at room temperature. Owing to crack deflection, crack bridging, phase transition and YAG of fracture toughness mechanism. the fracture toughness showed 7.1MPa${\cdot}m^{1/2}$. For composites added with l2wt% $Al_{2}O_{3}+Y_{2}O_3$ additives at room temperature The electrical resistivity and the resistance temperature coefficient respectively showed the lowest of 6.0${\sim}10^{-4}{\Omega}{\cdot}$ cm and 3.1${\times}10^{-3}/^{\circ}C$ for composite added with l2wt% $Al_{2}O_{3}+Y_{2}O_3$ additives at room temperature. The electrical resistivity of the composites was all positive temperature coefficient resistance(PTCR) in the temperature range of 25$^{\circ}C$ to 700$^{\circ}C$.

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AlSiCa($Al_2O_3-SiC-C$)계 내화물 재료에 관한 연구: (I) 국산 chamotte로부터 원료분말합성 (On the Study Of AlSiCa($Al_2O_3-SiC-C$) refractories: (I) Synthesis of raw material using domestic chnmotte)

  • 심광보;주경;오근호
    • 한국결정성장학회지
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    • 제7권4호
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    • pp.626-631
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    • 1997
  • 하동고령토($Al_2O_3-SiC-C$)를 출발원료로하여 AlSiCa내화재 원료를 합성하였다. 하동고령토와 탄소분말을 혼합하여 수소분위기하에서 반응시킨결과, $1300^{\circ}C$에서$Al_2O_3-SiC-C$ 복합체가 힙성되기 시작하여$1400^{\circ}C$에서 완전 합성되었고, $SiO_2$에 대한 최적carbon량은 mole비로 1:4이었다. 합성시 알루미나 용기에 탄소분말을 충전시키지 않을 때는 미합성부분이 없이 밝은 녹색을 띈 $\beta$-SiC(cubic form) 를 형성함을 확인하였다.

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Characterization of Chemically Stabilized $\beta$-cristobalite Synthesized by Solution-Polymerization Route

  • Lee, Sang-Jin
    • The Korean Journal of Ceramics
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    • 제3권2호
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    • pp.116-123
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    • 1997
  • A chemically stabilized $\beta$-cristobalite, which is stabilized by stuffing cations of $Ca^{2+}$ and $Al^{3+}$, was prepared by a solution-polymerization route employing Pechini resin or PVA solution as a polymeric carrier. The polymeric carrier affected the crystallization temperature, morphology of calicined powder, and particle size distribution. In case of the polyvinyl alcohol (PVA) solution process, a fine $\beta$-cristobalite powder with a narrow particle size distribution (average particle size : 0.3$\mu\textrm{m}$) and a BET specific surface area of 72 $\m^2$/g was prepared by an attrition-milling for 1 h after calcination at 110$0^{\circ}C$ for 1h. Wider particle size distribution and higher specific surface area were observed for the $\beta$-cristobalite powder derived from Pechini resin. The cubie(P1-to-tetraganalb) phase transformation in polynystalline $\beta$-cristobalite was induced at approximately 18$0^{\circ}C$. Like other materials showing transformation toughening, a critical size effect controlled the $\beta$-to-$\alpha$ transformation. Densifed cristobalite sample had some cracks in its internal texture after annealing. The cracks, occurred spontaneoulsy on cooling, were observed in the sample with an average grain sizes of 4.0 $\mu\textrm{m}$ or above. In case of the sintered cristobalite having a composition of CaO.$2Al_2O_3$.40SiO$_2$, small amount of amorphous phase and slow grain growth during annealing were observed. Shear stress-induced transformation was also observed in ground specimen. Cristobalite having a composition of CaO.2Al2O3.80SiO2 showed a more sensitive response to shear stress than the CaO.$2Al_2O_3$.40SiO$_2$ type cristobalite. Shear-induced transformation resulted in an increase of volume about 13% in $\alpha$-cristobalite phase on annealing for above 10 h in the case of the former composition.

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상 안정화제가 $Na^+$-Beta-Alumina 고체 전해질의 상 형성 및 소결밀도에 미치는 영향 (Effect of Phase Stabilizers on the Phase Formation and Sintering Density of $Na^+$-Beta-Alumina Solid Electrolyte)

  • 이기문;이성태;이대한;이상민;임성기
    • 공업화학
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    • 제23권6호
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    • pp.534-538
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    • 2012
  • $ Na^+$-beta-alumina 고체전해질을 고상반응법을 통해 합성하였으며, 두 종류의 안정화제 $Li_2O$와 MgO가 상 형성 및 소결밀도에 미치는 영향을 비교 분석하였다. 합성온도에 따른 ${\beta}/{\beta}^{{\prime}{\prime}}$-alumina 상 분율 분석을 위해, [$Na_2O$] : [$Al_2O_3$] = 1 : 5의 고정된 몰 비에서 하소온도를 $1200{\sim}1500^{\circ}C$로 변화하여, 각각 2 h동안 하소하였다. $Li_2O$를 안정화제로 사용한 경우에는 $1500^{\circ}C$에서 2차 상 전이가 발생해 ${\beta}^{{\prime}{\prime}}$-alumina 상 분율의 증가가 나타났지만, MgO를 첨가했을 때는 하소온도에 관계없이 상 분율이 유지되었다. 또한 disc 형태의 $Na^+$-beta-alumina 샘플을 $1550{\sim}1650^{\circ}C$의 온도에서 각각 30 min 소결한 후 상대 소결밀도, 상 변화 및 미세구조를 분석하였다. $Li_2O$를 안정화제로 사용하였을 때, 소결온도 $1600^{\circ}C$에서 ${\beta}^{{\prime}{\prime}}$-상 분율과 상대밀도가 각각 94.7%와 98%로 가장 높은 값을 나타냈으며, MgO를 안정화제로 사용하였을 경우, 소결온도의 증가에 따라 상대밀도가 크게 증가하는 결과를 보였다.

液狀 燒結에 의한 ${\beta}$-SIC TiB$_2$系 導電性 複合體의 特性(Ⅱ) (Properties of ${\beta}$-SIC TiB$_2$ Electroconductive Ceramic Composites Densified by Liquid-Phase Sintering(Ⅱ))

  • 신용덕;임승혁;송준태
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제50권6호
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    • pp.263-270
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    • 2001
  • The mechanical and electrical properties of the hot-pressed and annealed ${\beta}-SiC-TiB_2$,/TEX> electroconductive ceramic composites were investigated as function as functions of the liquid forming additives of $Al_2O_3+Y_2O_3$. The result of phase analysis of composites by XRD revealed ${\alpha}$-SiC(6H), $TiB_2$,/TEX>, and YAG($Al_5Y_3O_{12}$) crystal phase. The relative density and the mechanical properties of composites were increased with increasing $Al_2O_3+Y_2O_3$ contents in pressureless annealing method because YAG of reaction between $Al_2O_3$ was increased. The flexural strength showed the highest value of 458.9 MPa for composites added with 4 wt% $Al_2O_3+Y_2O_3$ additives in pressed annealing method at room temperature. Owing to crack deflection, crack bridging, phase transition and YAG of fracture toughness mechanism, the fracture toughness showed 7.1 MPa ${\cdot}\;m^{1/2}$ for composites added with 12 wt% $Al_2O_3+Y_2O_3$ additives in pressureless annealing method at room temperature. The electrical resistivity and the resistance temperature coefficient showed the lowest value of $6.0{\times}10^{-4}\;{\Omega}\;{\cdot}\;cm(25\'^{\circ}C}$ and $3.0{\times}10^{-3}/^{\circ}C$ for composite added with 12 wt% $Al_2O_3+Y_2O_3$ additives in pressureless annealing method at room temperature, respectively. The electrical resistivity of the composites was all positive temperature coefficient resistance(PTCR) in the temperature ranges from 25 $^{\circ}C$ to 700 $^{\circ}C$.

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