• 제목/요약/키워드: silicon carbide powder

검색결과 106건 처리시간 0.027초

Conversion of Carbon Fiber into Silicon Carbide Fiber by Pack-Cementation

  • Joo, Hyeok-Jong;Kim, Jung-Il;Lee, Jum-Kyun
    • Carbon letters
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    • 제1권1호
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    • pp.12-16
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    • 2000
  • Carbon fiber was reacted with gaseous silicon monoxide which is produced from pack-powder mixture at elevated temperature. As a result of the reaction, two kinds of SiC fiber were obtained. The first one was SiC fibers which were converted from carbon fiber. The fiber is constituted with polycrystal like fine grains or monolithic crystals that have a size from sub-micron to $10\;{\mu}m$. Their size depends on the temperature during the conversion reaction. The second one was ultra-fine SiC fibers that were found on the surface of the converted SiC fibers. The ultra-fine fibers have diameters from 0.08 to $0.2\;{\mu}m$ and their aspect ratio were larger than 100. The chemical composit ion of the ultra-fine fibers was analyzed using an Auger electron spectroscopy. In result, the fibers consist of 51% silicon, 38% carbon and 11% oxygen by weight.

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튜브형상 반응소결 탄화규소 부품의 시편크기에 따른 강도평가 유용성 고찰 (Mechanical Strength Values of Reaction-Bonded-Silicon-Carbide Tubes with Different Sample Size)

  • 김성원;이소율;오윤석;이성민;한윤수;신현익;김영석
    • 한국분말재료학회지
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    • 제24권6호
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    • pp.450-456
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    • 2017
  • Reaction-bonded silicon carbide (RBSC) is a SiC-based composite ceramic fabricated by the infiltration of molten silicon into a skeleton of SiC particles and carbon, in order to manufacture a ceramic body with full density. RBSC has been widely used and studied for many years in the SiC field, because of its relatively low processing temperature for fabrication, easy use in forming components with a near-net shape, and high density, compared with other sintering methods for SiC. A radiant tube is one of the most commonly employed ceramics components when using RBSC materials in industrial fields. In this study, the mechanical strengths of commercial RBSC tubes with different sizes are evaluated using 3-point flexural and C-ring tests. The size scaling law is applied to the obtained mechanical strength values for specimens with different sizes. The discrepancy between the flexural and C-ring strengths is also discussed.

Wear behavior of $Si_3N_4$-SiC nanocomposite in water

  • Kim, S. H.;Lee, S. W.
    • 한국결정성장학회:학술대회논문집
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    • 한국결정성장학회 1997년도 Proceedings of the 13th KACG Technical Meeting `97 Industrial Crystallization Symposium(ICS)-Doosan Resort, Chunchon, October 30-31, 1997
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    • pp.187-187
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    • 1997
  • Silicon nitride is the most excellent materials among structural ceramics. It has been reported that fracture toughness was improved with adding second phase particles, whisker, fiber etc. However, containing of second phase particles enhanced fracture toughness, however flexural strength was degraded. As adding nanosize SiC particles into silicon nitride, the physical properties of fluxural strength, fracture toughness, the modulus of elasticity. In this study, 2wt% $Al_2$O$_3$ and 4 wt% $Y_2$O$_3$ were added into UBE E-10 and 0, 10, 20, 30, 40, 50 vol% nano-SiC powder (Sumitomo T1 powder) were added, respectively. It is hot pressed at 185$0^{\circ}C$ for 1 hour. Most of structural ceramics for engineering application are wear resistance. In this study, wear behaviors (in water) of silicon nitride with varying the amount of nano-size silicon carbide were investigated, and was compared to physical properties. Simultaneously wear mechanism will be found out.

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용융 Si 침윤법에 의해 제조된 반응소결 탄화규소 복합체에서 SiC 입자 크기의 영향 (The Effect of SiC Powder Size at Reaction Bonded SiC Composite Fabricated by a Molten Si Infiltration Method)

  • 윤성호;조경선;;정훈;김영도;박상환
    • 한국세라믹학회지
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    • 제45권8호
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    • pp.486-492
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    • 2008
  • Reaction bonded silicon carbide(RBSC) composite for heat-exchanger was fabricated by molten Si infiltration method. The raw materials with variable particle sizes were used in this experience. The finer the particle size in sintered silicon carbide was the more increasing 3-point bending strength and fracture toughness. As the adaptable particle sizes had been occupied interstice arising from packing sample, the mechanical properties were increased. In the PCS1-1 sample, the 3-point bending strength and fracture toughness were 323MPa and $4.9\;MPa{\cdot}m^{1/2}$, respectively.

다층 기공구조를 갖는 다공성 반응소결 탄화규소 다공체 제조 (Fabrication of Porous Reaction Bonded Silicon Carbide with Multi-Layered Pore Structures)

  • 조경선;김규미;박상환
    • 한국세라믹학회지
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    • 제46권5호
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    • pp.534-539
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    • 2009
  • Reaction Bonded Silicon Carbide(RBSC) has been used for engineering ceramics due to low-temperature fabrication and near-net shape products with excellent structural properties such as thermal shock resistance, corrosion resistance and mechanical strength. Recently, attempts have been made to develop hot gas filter with gradient pore structure by RBSC to overcome weakness of commercial clay-bonded SiC filter such as low fracture toughness and low reliability. In this study a fabrication process of porous RBSC with multi-layer pore structure with gradient pore size was developed. The support layer of the RBSC with multi-layer pore structure was fabricated by conventional Si infiltration process. The intermediate and filter layers consisted of phenolic resin and fine SiC powder were prepared by dip-coating of the support RBSC in slurry of SiC and phenol resin. The temperature of $1550^{\circ}C$ to make Si left in RBSC support layer infiltrate into dip-coated layer to produce SiC by reacting with pyro-carbon from phenol resin.

플라즈마 용사방식에 의해 형성된 페라이트-탄화규소 표면층의 마이크로파 흡수 특성(II) (Microwave Absorbing Characteristics of Ferrite-silicon carbide surface Films Produced)

  • 신동찬;손현
    • 한국통신학회논문지
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    • 제18권8호
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    • pp.1169-1175
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    • 1993
  • 레이다의 추적 및 탐색으로 부터 비행 물체를 보호하기 위한 목적으로, 알루미늄 합금표면에 페라이트-탄화규소 복합물인 마이크로파 흡수층을 플라즈마 용사방식으로 제작하였다. 본 논문에서는 페라이트-탄화규소층(I) 제조시 사용했던 탄화규소 입자의 평균크기인 34[rm]대신에15[rm]가 사용되었으며, 플라즈마 용사변수들 중에서 분말의 공급비율은 70[Kg/h]대신에 50[Kg/h] 그리고, 용사거리는 80[mm[ 대신에 100[mm]가 사용 되었다. X-band(8~12.4(GHz)레이다용 페라이트-탄화규소 전자파 흡수체를 실험적으로 설계하고 시험제작하여 전기적 특성을 평가한 결과, -lOdB의 반사량을 허용한도로 했을 때 약 2.8%의 대역폭이 얻어졌으며, 최대 흡수두께는 0.5(mm)로 매우 양호한 박층형 전자파 흡수체가 얻어졌다.

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반응소결 탄화규소의 다양한 α-SiC 조성에 따른 기계적 특성과 전기저항 특성에 관한 연구 (A Study on the Mechanical Properties and Specific Resistivity of Reaction-Bonded Silicon Carbide According to α-SiC of Various Mixed Particle Size)

  • 김영주;박영식;정연웅;송준백;박소영;임항준
    • Composites Research
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    • 제25권6호
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    • pp.172-177
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    • 2012
  • 저저항 Si-SiC 소결체 제조를 위해 ${\alpha}$-SiC에서 조성과 C의 양을 변화시키면서 반응소결 특성을 고찰하였다. 시료준비는 정수압으로 성형체를 제조하였고, 용융Si 반응소결을 통해 시험편을 준비하였다. 반응소결체의 미세구조, 기계적 특성 및 전기저항 분석 결과 용융Si과 반응 후 미립의 ${\beta}$-SiC가 생성되었고, 치밀한 소결체를 형성하였다. 미립 ${\beta}$-SiC 생성량은 카본 양 에 따라 증가하였다. 그리고 C함량 10wt%이내에서 기계 R전기저항특성은 입도조성 영향이 크고 카본 함량 10wt%이상에서는 상전이 반응의 영향이 큼을 알 수 있었다.

폼 형태의 다공성 탄화규소 지지체 표면 위에 ZSM-5 합성 (Synthesis of ZSM-5 on the Surface of Foam Type Porous SiC Support)

  • 정은진;이윤주;원지연;김영희;김수룡;신동근;이현재;권우택
    • Korean Chemical Engineering Research
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    • 제53권4호
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    • pp.425-430
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    • 2015
  • 고분자 복제방법을 이용하여 제조한 폼 형태의 다공성 탄화규소 표면에 수열 합성 방법을 적용하여 ZSM-5를 합성하였다. 다공성 탄화규소 표면으로부터 ZSM-5가 합성될 수 있도록 유도하기 위하여 합성단계에 앞서 탄화규소 표면에 산화 층을 형성하였다. 수열합성 반응은 산화처리 된 다공성 탄화규소와 TEOS, $Al(NO_3){\cdot}9H_2O$ 및 TPAOH를 원료로 사용하여 $150^{\circ}C$에서 7시간 진행하였다. XRD 및 SEM 분석을 통하여 $1{\sim}3{\mu}m$ 크기의 ZSM-5가 다공성 탄화규소 표면에 코팅되어 성장하였음을 확인하였다. BET 분석결과 ZSM-5 합성 후에 $10{\AA}$이하의 미세기공이 급격히 증가하였으며, 비표면적이 $0.83m^2/g$에서 $30.75m^2/g$으로 급격히 증가되었음을 알 수 있었다.

실리콘 기판 슬러지로부터 고순도 탄화규소 분말 합성 (Synthesis of High-purity Silicon Carbide Powder using the Silicon Wafer Sludge)

  • 권한중;김민희;윤지환
    • 자원리싸이클링
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    • 제31권6호
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    • pp.60-65
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    • 2022
  • 본 논문에서는 반도체용 실리콘 기판 가공 과정에서 발생한 슬러지 재활용을 위해 탄화 반응에 의한 탄화규소(SiC) 분말 합성 공정을 적용한 결과를 제시하고자 한다. 입수한 슬러지는 실리콘 기판을 탄화규소 연마재를 사용하여 가공하는 과정에서 발생하므로 실리콘과 탄화규소가 혼합된 형태였으며 가공 설비로부터 발생한 철 불순물이 포함되어 있었다. 슬러지는 절삭유가 포함되어 있어 점성이 있는 유체 형태였으며 대기 건조를 통해 분말 형태로 변화된 후 산 세정을 통한 철 성분 제거 및 탄화에 의한 탄화규소 분말 합성 과정을 거치게 된다. 슬러지에 포함된 실리콘과 탄화규소의 비율에 따라 탄화 반응에 필요한 탄소량이 달랐으며 탄화규소의 함량이 커질수록 탄소 부족 현상으로 인해 비화학량론적 탄화물(SiCx, x<1) 형성이 촉진되어 순수한 탄화규소 합성이 이루어지지 않는 것을 확인하였다. 이러한 비화학량론적 탄화물은 잉여 탄소 추가와 고에너지 밀링에 의한 탄화 반응성 증가를 통해 제거할 수 있었으며 결과적으로 산 세정과 밀링 과정에 의해 슬러지로부터 순수한 탄화규소 분말 합성이 가능함을 확인할 수 있었다.

급속가열 이력 제어에 의한 $Si_3-N_4-SiC$계 미분말 시편의 치밀화 (Densification of Ultrafine $Si_3-N_4-SiC$ Powder Compacts by Rapid Heating under Controlled Thermograms)

  • 이형직
    • 한국세라믹학회지
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    • 제32권7호
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    • pp.832-838
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    • 1995
  • The densifying behavior of ultrafine amorphous Si3N4 (about 20 nm)-$\beta$-SiC (about 40~80 nm) powders (O2 : 1.3~15wt%, 0$700^{\circ}C$ within 15 sec and then immediately cooled and held at 135$0^{\circ}C$ for 10 min in N2 atmosphere without resorting to additives using a Xe image heating apparatus. Using an ultrafine pure Si3N4 powder with particle size less than 30nm, further more, mixed with an appropriate amount of $\beta$-SiC, was found to be advantageous to obtain uniform and homogeneous microstructure. In addition, ultrafine Si3N4 powders were also proved to be effective as sintering additive on densifying large sized Si3N4 powder compacts.

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