• 제목/요약/키워드: Liquid Silicon Infiltration

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완전 탄소 프리폼으로부터 Si 용융 침투에 의해 제조한 반응 소결 탄화규소의 치밀화에 미치는 Y2O3 첨가량의 영향 (Effect of Y2O3 Additive Amount on Densification of Reaction Bonded Silicon Carbides Prepared by Si Melt Infiltration into All Carbon Preform)

  • 조경식;장민호
    • 한국재료학회지
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    • 제31권5호
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    • pp.301-311
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    • 2021
  • The conversion of all carbon preforms to dense SiC by liquid infiltration can become a low-cost and reliable method to form SiC-Si composites of complex shape and high density. Reactive sintered silicon carbide (RBSC) is prepared by covering Si powder on top of 0.5-5.0 wt% Y2O3-added carbon preforms at 1,450 and 1,500℃ for 2 hours; samples are analyzed to determine densification. Reactive sintering from the Y2O3-free carbon preform causes Si to be pushed to one side and cracking defects occur. However, when prepared from the Y2O3-added carbon preform, an SiC-Si composite in which Si is homogeneously distributed in the SiC matrix without cracking can be produced. Using the Si + C = SiC reaction, 3C and 6H of SiC, crystalline Si, and Y2O3 phases are detected by XRD analysis without the appearance of graphite. As the content of Y2O3 in the carbon preform increases, the prepared RBSC accelerates the SiC conversion reaction, increasing the density and decreasing the pores, resulting in densification. The dense RBSC obtained by reaction sintering at 1,500 ℃ for 2 hours from a carbon preform with 2.0 wt% Y2O3 added has 0.20 % apparent porosity and 96.9 % relative density.

다양한 SiC 섬유를 적용한 실리콘 용융 침투 공정 SiCf/SiC 복합재료의 제조 및 특성 변화 연구 (Liquid Silicon Infiltrated SiCf/SiC Composites with Various Types of SiC Fiber)

  • 송종섭;김세영;백경호;우상국;김수현
    • Composites Research
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    • 제30권2호
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    • pp.77-83
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    • 2017
  • 섬유강화 세라믹 복합재료 제조 방법 중 실리콘 용융 침투 공정법(Liquid Silicon Infiltration-LSI)은 낮은 제조단가 및 짧은 공정 시간 등의 장점을 가진다. 본 연구에서는 고온 내산 특성이 우수한 SiC 섬유를 LSI 공정에 적용하기 위해 결정화도와 산소함량이 다른 세 가지 SiC 섬유(Tyranno SA, LoxM, Tyranno S)를 이용하여 $SiC_f/SiC$ 복합재료를 제작하고 그 적용 가능성을 확인하였다. LSI 공정을 통해 제조된 $SiC_f/SiC$ 복합재료는 모두 2% 미만의 기공률로 치밀화 되었지만, 섬유의 결정화도와 산소함량에 따라 3점 굽힘강도는 큰 차이를 나타냈다. 이는 $1450^{\circ}C$ 이상의 높은 LSI 공정 온도에 SiC 섬유가 노출 될 경우 비정질 SiOC상이 결정화되며 수축하는 현상과 섬유 내 잔존 산소-모재 내 탄소의 반응으로 인한 미세구조 차이에 기인하는 것으로 판단된다. 이는 SEM, XRD 및 TEM 분석을 통해 섬유 종류별 공정온도에서의 특성 변화로 확인하였다.

반응소결에 의한 $SiC/MoSi_2$ 복합체의 특성 (Properties of $SiC/MoSi_2$ Composites Prepared by Reaction Sintering Method)

  • 한인섭;양준환;서동수
    • 한국세라믹학회지
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    • 제31권4호
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    • pp.399-406
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    • 1994
  • The SiC/MoSi2 composite material was prepared by infiltration with the mixture of metal Si and MoSi2 into the preform of $\alpha$-SiC and graphite under the vacuum atmosphere of 10-1 torr. The mechanical properties, phases and microstructural characteristics have been investigated by employing an universal testing machine, scanning electron microscope and X-ray diffractometer. With the increase of MoSi2/Si mixing content, the quantity of the residual silicon phase was decreased and the hardness and fracture toughness of composite materials were increased. Also, as the infiltration temperature increased, a lot of fine-grained $\beta$-SiC phases, which were produced from the reaction of graphite and liquid silicon melt, were transformed to $\alpha$-SiC phases.

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무가압 분말 충전 성형법에 의해 제조된 Si-SiC 복합체에 관한 연구 (A Study on the Si-SiC Composites Fabricated by Pressureless Powder Packing Forming Method)

  • 박정현;임은택;성재석;최헌진;이준석
    • 한국세라믹학회지
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    • 제32권6호
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    • pp.710-718
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    • 1995
  • The new forming method, Pressureless Powder Packing Forming Method was applied to the manufacturing of reaction sintered SiC. After the experiments of vibratory powder packing and binder infiltration, the abrasive SiC powder of which mean size is 45${\mu}{\textrm}{m}$ was selected to this forming method. Uniform green bodies with porosity of 45% and narrow pore size distribution could be formed by this new forming method. Also, complex or varied cross-sectional shapes could be easily manufactured through the silicone rubber mould used in this forming method. Maximum 15 wt% amorphous carbon was penetrated into green body by multi impregnation-carbonization cycles. And reaction-bonded SiC was manufactured by infiltration of SiC-carbon shaped bodies with liquid silicon.

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Y2O3 첨가 탄소 프리폼에 Si 용융 침투에 의해 제조한 반응 소결 탄화규소 (RBSC Prepared by Si Melt Infiltration into the Y2O3 Added Carbon Preform)

  • 장민호;조경식
    • 한국분말재료학회지
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    • 제28권1호
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    • pp.51-58
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    • 2021
  • The conversion of carbon preforms to dense SiC by liquid infiltration is a prospectively low-cost and reliable method of forming SiC-Si composites with complex shapes and high densities. Si powder was coated on top of a 2.0wt.% Y2O3-added carbon preform, and reaction bonded silicon carbide (RBSC) was prepared by infiltrating molten Si at 1,450℃ for 1-8 h. Reactive sintering of the Y2O3-free carbon preform caused Si to be pushed to one side, thereby forming cracking defects. However, when prepared from the Y2O3-added carbon preform, a SiC-Si composite in which Si is homogeneously distributed in the SiC matrix without cracking can be produced. Using the Si + C → SiC reaction at 1,450℃, 3C and 6H SiC phases, crystalline Si, and Y2O3 were generated based on XRD analysis, without the appearance of graphite. The RBSC prepared from the Y2O3-added carbon preform was densified by increasing the density and decreasing the porosity as the holding time increased at 1,450℃. Dense RBSC, which was reaction sintered at 1,450℃ for 4 h from the 2.0wt.% Y2O3-added carbon preform, had an apparent porosity of 0.11% and a relative density of 96.8%.

액상소결 시의 β-SiC의 입자성장 방지 (Prevention of Grain Growth during the Liquid-Phase Assisted Sintering of β-SiC)

  • 길건영;노비얀토 알피안;한영환;윤당혁
    • 한국세라믹학회지
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    • 제47권6호
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    • pp.485-490
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    • 2010
  • In our previous studies, continuous SiC fiber-reinforced SiC-matrix composites ($SiC_f$/SiC) had been fabricated by two different slurry infiltration methods: vacuum infiltration and electrophoretic deposition (EPD). 12 wt% of $Al_2O_3-Y_2O_3$-MgO with respect to SiC powder was used as additives for liquid-phase assisted sintering. After hot pressing at $1750^{\circ}C$ under 20 MPa for 2 h in Ar atmosphere, a high composite density could be achieved for both cases, whereas the problems such as large grain size and non-uniform distribution of liquid phase were observed, which was resulted in the relatively poor mechanical properties of composites. Therefore, efforts have been made to reduce the grain growth during the sintering, including the optimization for hot pressing condition and utilization of spark plasma sintering using a SiC monolith. Based on the results, spark plasma sintering was found to be effective method in decreasing the amount of sintering additive, time and grain growth, which will be explained in comparison to the results of hot pressing in this paper.

추진기관용 C/SiC 복합재료의 특성 평가 (The Performance Evaluation of C/SiC Composite for Rocket Propulsion Systems)

  • 김연철
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2009년도 제33회 추계학술대회논문집
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    • pp.433-438
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    • 2009
  • 고체 및 액체 추진기괸에 적용하기 위하여 액체 실리콘 함침법(LSI)을 이용한 C/SiC 복합재료를 개발하였다. 연소시험을 통하여 C/SiC 복합재료의 우수한 성능을 확인하였으며 산화에 의한 삭마 모델을 제시 하였다.

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서로 다른 밀도를 갖는 탄소섬유강화 탄화규소 복합재료의 압흔응력에 의한 기계적 거동 (Mechanical Behavior of Indentation Stress in Carbon Fiber Reinforced Silicon Carbide Composites with Different Densities)

  • 이기성;김일겸;김태우;김세영;한인섭;우상국
    • 한국세라믹학회지
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    • 제48권4호
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    • pp.288-292
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    • 2011
  • In this study, we investigated the mechanical behavior of carbon fiber reinforced silicon carbide composites by indentation stress. Relatively porous and dense fiber reinforced ceramic composites were fabricated by liquid silicon infiltration (LSI) process. Densification of fiber composite was controlled by hardening temperature of preform and consecutive LSI process. Load-displacement curves were obtained during indentation of WC sphere on the carbon fiber reinforced silicon carbide composites. The indentation damages at various loads were observed, and the elastic modulus were predicted from unloading curve of load-displacement curve.

반응소결 탄화규소의 접동조건에 따른 마찰계수 및 미세구조 (Friction Coefficient and Microstructure of Reaction-Bonded Silicon Carbide According to Sliding Conditons)

  • 김호균;김인섭;이병하
    • 한국세라믹학회지
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    • 제32권7호
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    • pp.825-831
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    • 1995
  • Reaction-bonded SiC-Si material was fabricated by infiltration of Si melt into a mixture of $\alpha$-SiC and carbon at 175$0^{\circ}C$ under the vacuum atmosphere. Wear properties were analyzed by ball-on-plate wear tester, changing loading weight, sliding speed, sliding time and atmosphere, Results showed that the friction coefficient was decreased with increasing load and sliding velocity. The lowest friction coefficient of 0.05 was obtained under an oil atmosphere. The analysis of the wear surface indicated that the areas wehre particles were pulled out and where free silicon particles worn out preferentially serve as liquid reservoirs to decrease the wear resistance.

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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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