• 제목/요약/키워드: $\alpha$-SiC

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$\alpha$-SiC-WC 전도성 세라믹 복합체의 특성에 미치는 무가압 Annealing 온도 (Effect of Pressurless Annealing Temperature on the Properties of $\alpha$-SiC-WC Electroconductive Ceramic Composites.)

  • 신용덕;오상수;주진영
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제53권5호
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    • pp.241-247
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    • 2004
  • The composites were fabricated 61 vol.%$\alpha$-$\alpha$-SiC and 39vol.% WC powders with the liquid forming additives of 12wt% $Al_2$O$_3$+Y$_2$O$_3$ by pressureless annealing at 1700, 1800, 190$0^{\circ}C$ for 4 hours. The result of phase analysis of composites by XRD revealed $\alpha$-SiC(2H), WC, and YAG(Al$_{5}$ Y$_3$O$_{12}$ ) crystal phase. The relative density, the flexural strength, fracture toughness and Young's modulus showed respectively the highest value of 99.4%, 375.76㎫, 5.79㎫ㆍm$\frac{1}{2}$, and 106.43㎬ for composite by pressureless annealing temperature 190$0^{\circ}C$ at room temperature. The electrical resistivity showed the lowest value of 1.47${\times}$10$^{-3}$ $\Omega$$.$cm for composite by pressureless annealing temperature 190$0^{\circ}C$ at $25^{\circ}C$. The electrical resistivity of the $\alpha$-SiC-WC composites was all positive temperature cofficient resistance (PTCR) in the temperature ranges from $25^{\circ}C$ to 50$0^{\circ}C$.

제천규석으로부터 SiC 및 $SiC-Si_3N_4$계 분말 합성 (Syntheses of SiC and $SiC-Si_3N_4$ Powder from Jecheon Quartz)

  • 이홍림;배철훈;문준화
    • 한국세라믹학회지
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    • 제23권1호
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    • pp.67-73
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    • 1986
  • SiC and $SiC-Si_3N_4$ powder were synthesized via the carbiding and carbiding-nitriding reaction of Jecheon quartz respectively using graphite as a reducing agent. $\beta$-SiC+($\alpha$+$\beta$)-$Si_3N_4$ composite was obtained by the carbiding-nitriding reaction of Jecheon quartz-graphite mixture at 1, 35$0^{\circ}C$ in $H_2$ atmosphere. $\beta$-SiC+($\alpha$+$\beta$)-$Si_3N_4$ composite was obtained by the carbidint-nitriding reaction of Jecheon quartz-graphite mixture at 1, 35$0^{\circ}C$ in $N_2-H_2$ atmosphere. The ratio of $\beta$-SiC+($\alpha$+$\beta$)-$Si_3N_4$ content in a produced composite could be controlled by adjusting the reaction time and gaseous mixture.

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거대기공 다공질 탄화규소 세라믹스의 꺾임강도 (Flexural Strength of Macroporous Silicon Carbide Ceramics)

  • 임광영;김영욱;송인혁;배지수
    • 한국세라믹학회지
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    • 제48권5호
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    • pp.360-367
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    • 2011
  • Macroporous silicon carbide (SiC) ceramics were fabricated by powder processing and polymer processing using carbon-filled polysiloxane as a precursor. The effects of the starting SiC polytype, template type, and template content on porosity and flexural strength of macroporous SiC ceramics were investigated. The ${\beta}$-SiC powder as a starting material or a filler led to higher porosity than ${\alpha}$-SiC powder, owing to the impingement of growing ${\alpha}$-SiC grains, which were transformed from ${\beta}$-SiC during sintering. Typical flexural strength of powder-processed macroporous SiC ceramics fabricated from ${\alpha}$-SiC starting powder and polymer microbeads was 127 MPa at 29% porosity. In contrast, that of polymer-processed macroporous SiC ceramics fabricated from carbon-filled polysiloxane, ${\beta}$-SiC fillers, and hollow microspheres was 116MPa at 29% porosity. The combination of ${\alpha}$-SiC starting powder and a fairly large amount (10 wt%) of $Al_2O_3-Y_2O_3$ additives led to macroporous SiC ceramics with excellent flexural strength.

Effect of Large $\alpha$-Silicon Carbide Seed Grains on Microstructure and Fracture Toughness of Pressureless-Sintered $\alpha$-Silicon Carbide

  • Young-Wook Kim;Kyeong Sik Cho;June-Gunn Lee
    • The Korean Journal of Ceramics
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    • 제2권1호
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    • pp.39-42
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    • 1996
  • ${\alpha}-SiC$ powder with or without the addition of 0.1 wt% of large ${\alpha}-SiC$ partices(seeds) was pressureless-sintered at $1950^{\circ}C$ for 0.5, 2, and 4 h using $Y_3Al_5 O_{12}$ (yttrium aluminum garnet, YAG) as a sintering aid. The materials without seeds had an equiaxed grain struture. In contrast, the materials with seeds sintered for 2 and 4 h had a duplex microstructure with large elongated grains and amall equiaxed grains. Addition of large ${\alpha}-SiC$ seeds into ${\alpha}-SiC$ accelerated the grain growth of some ${\alpha}-SiC$ grains during sintering and resulted in the increased fracture toughness of the sintered materials. The fracture toughnesses of materials with or without seeds sintered for 4 h were 6.6 and $5.2 MPa \;m^{12}$, respectively.

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기상성장법(CVT)에 의한 Iron disilicide단결정의 합성 (Synthesis of iron disilicide single crystal by chemical vapour transport)

  • 이충효;홍대석;이상진;최종건;김판채
    • 한국결정성장학회지
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    • 제12권2호
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    • pp.68-72
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    • 2002
  • Iodine ($I_2$)을 이용한 기상성장법(chemical vapour transport CVT)으로 상용 FeSi$_2$분말로부터 $\beta$-$FeSi_2$$\alpha$-$FeSi_2$단결정을 제조하였다 $FeSi_2$ 분말은 iodine과 함게 석영 ampoule에 넣은 후 진공배기하여 two-zone 전기로 내에서 기상성장 시켰다. CVT법에 의한 기상성장시 고온부분의 source측 온도는 $1050^{\circ}C$이었으며 $\beta$-$FeSi_2$$\alpha$-$FeSi_2$ 단결정이 얻어지는 성장측 온도는 각각 $750^{\circ}C$$950^{\circ}C$이었다. 이때 얻어진$\alpha$-$FeSi_2$ 단격정은 $l0\times10 \textrm{mm}^2$크기의 판상결정이었고 orthorhombic 구조의 $\beta$-$FeSi_2$, 단결정은 길이 10mm의 needle형 결정임을 알 수 있었다. $\alpha$-$FeSi_2$ 단결정의 조성을 EPMA로 조사한 결과 Si이 화학양론비보다 많은 $FeSi_{2.58}$ 이었다. CVT법으로 합성된 $\beta$-$FeSi_2$ 격정의 승온에 따른 상의 안정성을 조사한 결과 $930^{\circ}C$ 이상에서 $\alpha$-$FeSi_2$로 상변태함을 알 수 있었다.

탄화규소 소결체의 기계적 특성 및 마찰마모 (The Mechanical and Tribological Properties of Silicon Carbide Bodies)

  • 이승훈;김홍기;김영호;이경희
    • 한국세라믹학회지
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    • 제31권11호
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    • pp.1307-1314
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    • 1994
  • The aim of this work is to show the way of manufacturing the SiC mechanical seal at the low temperature of 130$0^{\circ}C$ using clay and frit as source of secondary phase. $\alpha$-SiC and $\beta$-SiC powder which showed different distribution of particle were used as starting materials, i.e. average particle size of $\alpha$-SiC was larger than that of $\beta$-SiC. The mechanical and tribological properties of two groups of specimen, i.e. one contained mainly larger $\alpha$-SiC powder and the other mainly fine particle $\beta$-SiC, were measured. The specimen consisted of larger $\alpha$-SiC exhibited lower density flexural strength and wear resistance is comparison with these of sample containning mainly $\beta$-SiC . This difference could be originated from the dependence of capillary force on the particle size. For the larger SiC particle, the liquid phase may not fill the whole pores during sintering, due to low capillary force, whereas the liquid phase can infiltrate into the small ores surrounded small $\beta$-SiC particle. Thus, the course of high flexural strength and high wear resistance of specimen prepared using small particles can be explaced from the easy infiltration of liquid phase.

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알루미나의 첨가가 ${\alpha}-SiC$의 가압소결 및 기계적 성질에 미치는 영향 (Effect of $Al_2O_3$ on Hot-Press of ${\alpha}-SiC$ and Mechanical Properties)

  • 이수영;고재웅;김해두
    • 한국세라믹학회지
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    • 제28권7호
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    • pp.561-567
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    • 1991
  • Submicron ${\alpha}-SiC$ powder with $Al_2O_3$ addition was hot-pressed under the controlled heating and pressurizing schedule. $SiO_2$ layer on ${\alpha}-SiC$ powder was effective for the sintering of ${\alpha}-SiC$ powder when $Al_2O_3$ was used as an additive. Applying of pressure under the controlled schedule accelerated the rearrangment of SiC grains, yielding 98% of theoretical density of SiC even at $1900^{\circ}C$. Flexural strength of the specimen containing 2 wt% $Al_2O_3$ was increased as increasing the hot-pressing temperature up to $2050^{\circ}C$ and maximum value was 800 MPa, while the flexural strength of the specimen containing 10 wt% $Al_2O_3$ was decreased as increasing the hot-pressing temperature above $2000^{\circ}C$ due to the formation of continuous grain boundary phase. Fracture toughness of the specimens was in the range of $3.5~4.5\;MNm^{-3/2}$ regardless of the amount of $Al_2O_3$ addition.

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Al-B-C 조제 β-SiC의 스파크 플라즈마 소결에 미치는 α-SiC seed 첨가 영향: 미세 구조 변화 (Influence of α-SiC Seed Addition on Spark Plasma Sintering of β-SiC with Al-B-C: Microstructural Development)

  • 조경식;이현권;이상우
    • 한국분말재료학회지
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    • 제17권1호
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    • pp.13-22
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    • 2010
  • The unique features of spark plasma sintering process are the possibilities of a very fast heating rate and a short holding time to obtain fully dense materials. $\beta$-SiC powder with 0, 2, 6, 10 wt% of $\alpha$-SiC particles (seeds) and 4 wt% of Al-B-C (sintering aids) were spark plasma sintered at $1700-1850^{\circ}C$ for 10 min. The heating rate, applied pressure and sintering atmosphere were kept at $100^{\circ}C/min$, 40 MPa and a flowing Ar gas (500 CC/min). Microstructural development of SiC as function of seed content and temperature during spark plasma sintering was investigated quantitatively and statistically using image analysis. Quantitative image analyses on the sintered SiC ceramics were conducted on the grain size, aspect ratio and grain size distribution of SiC. The microstructure of SiC sintered up to $1700^{\circ}C$ consisted of equiaxed grains. In contrast, the growth of large elongated SiC grains in small matrix grains was shown in sintered bodies at $1750^{\circ}C$ and the plate-like grains interlocking microstructure had been developed by increasing sintering temperature. The introduction of $\alpha$-SiC seeds into $\beta$-SiC accelerated the grain growth of elongated grains during sintering, resulting in the plate-like grains interlocking microstructure. In the $\alpha$-SiC seeds added in $\beta$-SiC, the rate of grain growth decreased with $\alpha$-SiC seed content, however, bulk density and aspect ratio of grains in sintered body increased.

안경렌즈 절삭용 재료의 기계적 특성(I) (Mechanical properties of materials for spectacle lens cutting(I))

  • 이영일;김진구
    • 한국안광학회지
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    • 제5권1호
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    • pp.55-59
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    • 2000
  • 본 연구에서는 ${\beta}$-SiC, ${\alpha}$-SiC, $Al_2O_3$, $Y_2O_3$ 분말들을 출발원료로 사용하여 일축 가압 소결 및 열처리함으로서 길게 자란 탄화규소입가들이 균일하게 분포된 자기강화 미세구조를 갖는 안경렌즈 절삭용 재료를 제조하였다. 주사전자 현미경을 통해 미세구조를 관찰하였다. 가압 소결과 열처리 동안에 탄화규소의 ${\beta}{\rightarrow}{\alpha}$ 상변태에 기인하여 길게 자란 ${\alpha}$-SiC 입자들이 형성되었고, 이로 인해 파괴인성이 증가하였다. 신소재의 대표적인 경도와 파괴인성은 각각 13.3 GPa과 $4.8MPa{\cdot}m^{1/2}$이었다.

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가압소결 SiC/$Si_3$$N_4$/SiCw 복합체의 마찰마모특성 (Tribological Properties of Hot Pressed SiC/$Si_3$$N_4$/SiCw Composites)

  • 백용혁;최웅;강선명;박용갑
    • 한국세라믹학회지
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    • 제37권11호
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    • pp.1039-1043
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    • 2000
  • $\alpha$-Si$_3$N$_4$가 20vol% 혼합된 SiC/Si$_3$N$_4$혼합물에서 $\alpha$-SiC의 일부를 SiC whisker로 치환하여 첨가한 후 180$0^{\circ}C$, 25MPa의 압력으로 hot pressing하여 SiC/Si$_3$N$_4$/SiCw 복합체를 제조하였다. SiC whisker의 첨가 함량이 증가할수록 상대밀도, 꺽임강도, 마모 저항성은 감소되었으나, 파괴인성은 크게 향상되었다. $\alpha$-SiC의 일부를 SiC whisker로의 치환은 치밀화를 억제하였으나 파괴인성의 증가는 마모 저항성을 향상시키지 않았다.

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