• 제목/요약/키워드: Nano ceramics

검색결과 174건 처리시간 0.031초

Y2O3-카본 복합체의 전기전도성에 미치는 소결온도의 영향 (Effects of Sintering Temperature on the Electrical Conductivities of the Y2O3-Carbon Composites)

  • 최관영;오윤석;김성원;김형순;박종훈;이성민
    • 한국세라믹학회지
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    • 제49권2호
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    • pp.173-178
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    • 2012
  • The $Y_2O_3$ ceramics have been widely used as plasma resistant materials in the semiconductor industry. In this study, composites made of plasma resistant $Y_2O_3$ and electrically conductive carbon have been produced. The electrical properties of this composite were measured with respect to the size, volume fraction of the conductive carbon phase, and sintering temperature. When micro-sized carbon was used, the composites were insulating up to 5 wt% addition of the carbon. However, when nano-sized carbon of around 60 ~100 nm was used, the composites became conductive over threshold volume fraction of carbon, which increased with increasing sintering temperature. This behavior of electrical conductivity of the composites was discussed in terms of the percolation theory. The percolation threshold of the conductivity seemed to be affected by the grain growth and coalescences of dispersed conductive carbon phases with grain growth of matrix $Y_2O_3$.

Enhanced Magnetic Properties of BiFe1-$_xNi_xO_3$

  • Yoo, Y.J.;Hwang, J.S.;Park, J.S.;Kang, J.H.;Lee, B.W.;Lee, S.J.;Kim, K.W.;Lee, Y.P.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제41회 하계 정기 학술대회 초록집
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    • pp.183-183
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    • 2011
  • Multiferroic materials have been widely studied in recent years, because of their abundant physics and potential applications in the sensors, data storage, and spintronics. $BiFeO_3$ is one of the well-known single-phase multiferroic materials with $ABO_3$ structure and G-type antiferromagnetic behavior below the Neel temperature $T_N$ ~ 643 K, but the ferroelectric behavior below the Curie temperature $T_c$~1,103 K. In this study, the $BiFe_{1-x}Ni_xO_3$ (x=0 and 0.05) bulk ceramics were prepared by solid-state reaction and rapid sintering with high-purity $Bi_2O_32$, $Fe_3O_4$ and NiO powders. The powders of stoichiometric proportions were mixed, as in the previous investigations, and calcined at 450$^{\circ}C$ for $BiFe_{1-x}Ni_xO_3$ for 24 h. The obtained powders were grinded, and pressed into 5-mm-thick disks of 1/2-inch diameter. The disks were directly put into the oven, which has been heated up to 800$^{\circ}C$ and sintered in air for 20 min. The sintered disks were taken out from the oven and cooled to room temperature within several min. The phase of samples was checked at room temperature by powder x-ray diffraction using a Rigaku Miniflex diffractometer with Cu K${\alpha}$ radiation. The Raman measurements were carried out by employing a hand-made Raman spectrometer with 514.5-nm-excitation $Ar^+$ laser source under air ambient condition on a focused area of 1-${\mu}m$ diameter. The field-dependent magnetization measurements were performed with a superconducting quantum-interference-device magnetometer.

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열차폐용 희토류 산화물의 상형성과 열물성 (Phase Evolution and Thermo-physical Properties of Rare-earth Oxides for Thermal Barrier Systems)

  • 심병철;곽길호;이성민;오윤석;김형태;장병국;김성원
    • 한국분말재료학회지
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    • 제17권2호
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    • pp.148-153
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    • 2010
  • Thermal barrier systems have been widely investigated over the past decades, in order to enhance reliability and efficiency of gas turbines at higher temperatures. Yttria-stabilized zirconia (YSZ) is one of the most leading materials as the thermal barriers due to its low thermal conductivity, thermodynamic stability, and thermal compatibility with metal substrates. In this work, rare-earth oxides with pyrochlore phases for thermal barrier systems were investigated. Pyrochlore phases were successfully formed via solid-state reactions started from rare-earth oxide powders. For the heat-treated samples, thermo-physical properties were examined. These rare-oxide oxides showed thermal expansion of $9{\sim}12{\times}10^{-6}/K$ and thermal conductivity of 1.2~2.4 W/mK, which is comparable with the thermal properties of YSZ.

액상소결법에 의한 탄화규소 제조시 소결조제와 온도의 영향 (Influence of Sintering Additives and Temperature on Fabrication of LPS-SiC)

  • 정헌채;윤한기
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2004년도 학술대회지
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    • pp.266-270
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    • 2004
  • SiC materials have been extensively studied for high temperature components in advanced energy system and advanced gas turbine because it has excellent high temperature strength, low coefficient of thermal expansion, good resistance to oxidation and good thermal and chemical stability etc. However, the brittle characteristics of SiC such as low fracture toughness and low strain-to fracture still impose a severe limitation on practical applications of SiC materials. For these reasons, SiC/SiC composites can be considered as a promising for various structural materials, because of their good fracture toughness compared with monolithic SiC ceramics. But, high temperature and pressure lead to the degradation of the reinforcing jiber during the hot pressing. Therefore, reduction of sintering temperature and pressure is key requirements for the fabrication of SiC/SiC composites by hot pressing method. In the present work, monolithic Liquid Phase Sintered SiC (LPS-SiC) was fabricated by hot pressing method in Ar atmosphere at $1800^{\circ}C$ under 20MPa using $Al_2O_3,\;Y_2O_3\;and\;SiO_2$ as sintering additives in order to low sintering temperature and sintering pressure. The starting powder was high purity $\beta-SiC$ nano-powder with all average particle size of 30mm. The characterization of LPS-SiC was investigated by means of SEM and three point bending test. Base on the composition of sintering additives-, microstructure- and mechanical property correlation, tire compositions of sintering additives are discussed.

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Nickel(II) nitrate hexahydrate를 전구체로 사용한 산화니켈(NiO) 나노입자의 합성 (Synthesis of Nickel Oxide (NiO) nanoparticles using nickel(II) nitrate hexahydrate as a precursor)

  • 김수종
    • 문화기술의 융합
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    • 제9권3호
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    • pp.593-599
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    • 2023
  • 질산니켈육수화물염(nickel(II) nitrate hexahydrate) 수용액을 공업용 펄프에 함침시킨 전구체를 이용하여 세라믹스 분말을 제조하는 간단한 액상 합성법으로 산화니켈(NiO) 나노입자를 성공적으로 합성하였다. 질산니켈육수화물염 수용액이 함침된 전구체의 미세구조를 주사전자현미경(SEM)으로 확인하였고, 전구체의 열처리온도 증가에 따라 생성되는 산화니켈(NiO) 입자의 결정구조 및 입자크기를 X선회절분석(XRD) 및 SEM으로 분석하였다. 그 결과 전구체의 유기물질이 완전하게 열분해 되는 온도는 495-500℃이며, 열처리 온도의 증가에 따라 생성되는 산화니켈 입자의 크기 및 결정성이 증가하는 것을 XRD, SEM 분석을 통하여 확인하였다. 500-800℃에서 각각 1시간 동안 열처리하여 얻어진 산화니켈 입자의 크기는 50-200nm였다. 열처리 온도 380℃에서 NiO 결정상이 형성되고, 800℃까지는 NiO 단일상만 존재하며, 열처리 온도가 높아짐에 따라 생성되는 입자의 크기가 커지고 있음을 XRD 및 SEM 분석으로 확인하였다.

지르코니아와 레진나노세라믹 임플란트 지대주의 두께에 따른 열순환 후 파절저항 (Fracture resistance of zirconia and resin nano ceramic implant abutments according to thickness after thermocycling)

  • 이정원;차현석;이주희
    • 대한치과보철학회지
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    • 제55권2호
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    • pp.144-150
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    • 2017
  • 목적: 이 연구의 목적은 심미적인 임플란트 지대주의 종류와 두께에 따른 파절 강도를 측정하여 구강 내 저작압에 견디는 최소한의 두께를 평가하기 위함이다. 재료 및 방법: 대조군으로 0.5 mm 두께의 티타늄 임플란트 지대주를(Ti-0.5), 실험군으로 지르코니아 임플란트와 레진 나노 세라믹 지대주를 사용하여 각각 0.5 mm, 0.8 mm, 1.0 mm 두께로 각 그룹에 10개씩 총 70개의 시편을 제작하였다(그룹Zir-0.5, Zir-0.8, Zir-1.0, RNC-0.5, RNC-0.8, RNC-1.0). 모든 시편은 파절 실험 이전에 열순환을 시행하여 구강 내에서의 사용을 재현한 후, universal testing machine을 이용하여 각 시편의 파절 강도를 측정하여 평균값을 측정하였다. 그룹들의 평균 파절 값을 측정하였으며 이원분산분석을 이용하여 통계학적으로 분석하였다. 결과: Zir-1.0군이 가장 높은 파절 강도 $2,476.3{\pm}342.0N$를 보였으며 뒤를 이어 Zir-0.8 ($1,518{\pm}347.9N$), Ti-0.5 ($1,041.8{\pm}237.2N$), Zir-0.5 ($631.4{\pm}149.0N$), 의 순이었다. RNC 그룹의 경우에 Ti와 Zir 그룹에 비교하여 유의하게 낮은 파절 강도값을 나타내었으며(RNC-1.0 $427.5{\pm}72.1$, RNC-0.8 $297.9{\pm}41.2$), 모든 실험군에서 지대주 두께가 감소할수록 파절 강도 값도 유의하게 감소했다(P < .01). RNC-0.5 ($127.4{\pm}35.3N$) 그룹은 다른 모든 군에 비해 유의하게 낮은 값을 보였다(P < .05). 결론: 이번 실험에서 사용된 모든 두께의 지르코니아 지대주는 전치부와 구치부의 교합압을 견딜 수 있는 정도의 파절 강도를 보여주었다. 레진 나노 세라믹 지대주의 경우 0.8 mm 두께 이상에서 전치부의 교합압을 견딜 수 있는 가능성을 보여주었다.

고상반응법을 이용한 LAS계의 CaCO3와 ZrO2 첨가에 따른 소결체 특성 연구 (Sintered body characteristics of LAS by addition of CaCO3 and ZrO2 using a solid-state reaction)

  • 김상훈;강은태;김응수;황광택;조우석
    • 한국결정성장학회지
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    • 제21권5호
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    • pp.218-224
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    • 2011
  • 저열팽창 특성을 갖는 난소결 물질인 LAS($Li_2O-Al_2O_3-SiO_2$)계를 고상 소결로 제조하였다. LAS계의 ${\beta}$-spodumene($Li_2O-Al_2O_3-4SiO_2$) 조성에 소결 조제로 $CaCO_3$를 첨가하였고, 강도 증가를 위하여 $ZrO_2$를 첨가하였다. 첨가제의 양의 변화와 소결 온도의 변화에 따른 소결 특성, 미세 구조, 기계적 특성 및 열팽창 특성에 대하여 조사하였다. 0.1 mol%의 $CaCO_3$을 첨가하였을 때, 치밀화가 증진됨을 미세구조 관찰에 의해 확인하였으며, $ZrO_2$의 첨가로 강도가 증진됨을 확인하였다. Dilatometer로 측정한 열팽창 계수는 선택된 전 조성에서 값이 $1.2{\sim}1.7{\times}10^6/^{\circ}C$임을 확인하였다.

Ferroelectric and Magnetic Properties of Dy and Co Co-Doped $BiFeO_3 $ Ceramics

  • 유영준;박정수;이주열;강지훈;이광훈;이보화;김기원;이영백
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.260-260
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    • 2013
  • Multiferroic materials have attracted much attention due to their fascinating fundamental physical properties and technological applications in magnetic/ferroelectric data-storage systems, quantum electromagnets, spintronics, and sensor devices. Among single-phase multiferroic materials, $BiFeO_3 $ is a typical multiferroic material with a room temperature magnetoelectric coupling in view of high magnetic-and ferroelectric-ordering temperatures (Neel temperature $T_N$~647 K and Curie temperature $T_C$~1,103 K). Rare-earth ion substitution at the Bi sties is very interesting, which induces suppressed volatility of Bi ion and improved ferroelectric properties. At the same time, Fe-site substitution with magnetic ions is also attracting, and the enhanced ferromagnetism was reported. In this study, $Bi_{1-x}Dy_xFe_{0.95}Co_{0.05}O_3$ (x=0, 0.05 and 0.1) bulk ceramic compounds were prepared by solid-state reaction and rapid sintering. High-purity $Bi_2O_3$, $Dy_2O_3$, $Fe_2O_3$ and $Co_3O_4$ powders with the stoichiometric proportions were mixed, and calcined at $500^{\circ}C$ or 24 h to produce $Bi_{1-x}Dy_xFe_{0.95}Co_{0.05}O_3$. The samples were immediately put into an oven, which was heated up to $800^{\circ}C$ nd sintered in air for 30 min. The crystalline structure of samples was investigated at room temperature by using a Rigaku Miniflex powder diffractometer. The field-dependent magnetization measurements were performed with a vibrating-sample magnetometer. The electric polarization was measured at room temperature by using a standard ferroelectric tester (RT66B, Radiant Technologies).

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LAS (β-spodumene)와 Fe2O3 첨가에 따른 Al2TiO5의 소결체 특성 연구 (Characteristics of the sintered body of the Al2TiO5 with addition of LAS (β-spodumene) and Fe2O3)

  • 김상훈;강은태;김응수;황광택;조우석
    • 한국결정성장학회지
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    • 제22권1호
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    • pp.57-63
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    • 2012
  • $Al_2TiO_5$에 LAS(${\beta}$-spodumene)와 $Fe_2O_3$를 첨가하여 고상법으로 세라믹 소결체를 제조하였다. $Al_2TiO_5$에 첨가된 LAS는 액상을 형성하고, $Fe_2O_3$는 입자 성장을 억제시켜 소결체를 치밀화하였다. 첨가제의 양을 변화시켜 소결특성, 기계적 특성 및 열충격 특성에 대하여 조사하였다. $Fe_2O_3$가 20 wt% 첨가된 LAS를 $Al_2TiO_5$에 20 wt% 첨가하였을 때, 꺽임 강도는 120 MPa 이상이었고, 열충격에 대한 저항성은 $1200^{\circ}C$ 이상으로 우수함을 확인하였다.