• 제목/요약/키워드: SiC 탄화규소

검색결과 291건 처리시간 0.029초

입자충격속도에 따른 세라믹재료의 콘크랙 형상 변화 (Variation of Cone Crack Shape in Ceramic Materials According to Spherical Impact Velocity)

  • 오상엽;신형섭;서창민
    • 대한기계학회논문집A
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    • 제26권2호
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    • pp.380-386
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    • 2002
  • Damage behaviors induced in silicon carbide by an impact of particle having different material and size were investigated. Especially, the influence of the impact velocity of particle on the cone crack shape developed was mainly discussed. The damage induced by spherical impact was different depending on the material and size of particles. Ring cracks on the surface of specimen were multiplied by increasing the impact velocity of particle. The steel particle impact produced larger ring cracks than that of SiC particle. In the case of high velocity impact of SiC particle, radial cracks were produced due to the inelastic deformation at the impact site. In the case of the larger particle impact, the damage morphology developed was similar to the case of smaller particle one, but a percussion cone was farmed from the back surface of specimen when the impact velocity exceeded a critical value. The zenithal angle of cone cracks developed into SiC material decreased monotonically with increasing of the particle impact velocity. The size and material of particle influenced more or less on the extent of cone crack shape. An empirical equation, $\theta$= $\theta$$\sub$st/, v$\sub$p/(90-$\theta$$\sub$st/)/500 R$\^$0.3/($\rho$$_1$/$\rho$$_2$)$\^$$\frac{1}{2}$/, was obtained as a function of impact velocity of the particle, based on the quasi-static zenithal angle of cone crack. It is expected that the empirical equation will be helpful to the computational simulation of residual strength in ceramic components damaged by the particle impact.

탄소섬유가 혼합된 세라믹 복합재 제동마찰재의 마찰·마모 특성 (Tribological Properties of Ceramic Composite Friction Materials Reinforced by Carbon Fibers)

  • 구병춘;김민수
    • Tribology and Lubricants
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    • 제33권1호
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    • pp.15-22
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    • 2017
  • Because the running speed of vehicles is increasing and a shorter braking distance is required, high heat-resistant brake pads are needed to satisfy the requirements of customers and car makers. In the near future, hazardous materials such as Cu, Cr, Zn, and Sb will be restricted from use in friction materials. Ceramic composites reinforced by carbon fibers are good candidates for eco-friendly friction materials. In this study, we develop ceramic composite friction materials. The friction materials are composed of carbon fibers, Si, SiC, graphite, and phenol resin and are prepared by hot forming and heat treatment at high temperatures. The density, void ratio, and compressive strength are $1.59-1.66g/cm^3$, 16.6-20, and 70-90 MPa, respectively. Friction and wear tests are performed using a pin-on-plate-type reciprocating friction tester at 25, 100, and $200^{\circ}C$. The counterpart material is a CrMoV steel extracted from a KTX brake disc. Friction coefficient, wear amount, and wear mechanism are measured and examined. We determine that the friction coefficients depend on the temperature and the fluctuation of the friction coefficients is larger at higher temperatures. The amount of wear increases with the surface temperatures of the specimens. The tribological properties of the developed composites are similar to those of a Cu-based sintered friction material. Through this study, it is confirmed that ceramic composite materials can be used as friction materials.

Bio waste 소재로부터의 마이크로 필러 추출 (Extraction of Micro Filler from Bio-waste Material)

  • 남기법;송정일
    • Composites Research
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    • 제31권5호
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    • pp.209-214
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    • 2018
  • 본 연구에서는 친환경적이고 공급이 안정적인 소재를 찾기 위하여, Bio waste인 쌀겨와 조개 껍질에서 활용하여 마이크로 사이즈의 미세 입자를 추출하고, 추출한 입자의 크기와 형상을 분석한 후 CFRP에 첨가하여 물성의 변화를 관찰하였다. 쌀겨와 탄화 쌀겨의 주요구성성분은 탄소, 산소, 규소로 이루어졌으며 탄화과정을 거치면서 탄소와 규소의 비율이 증가함을 확인하였고, 조개 껍질 분말에서는 탄소 산소와 칼슘이 검출되었으며 이는 조개 껍질의 주요구성물질인 탄산칼슘의 영향으로 보인다. 쌀겨 분말의 면적평균은 $6.19{\mu}m$ 체적평균은 $14.77{\mu}m$으로 FE-SEM을 통하여 막대형상의 입자가 관찰되며 이는 쌀겨가 가지고 있던 껍질부분의 주름이나 표면의 털이 남아있는 형상으로 보인다. 탄화쌀겨의 분말은 면적평균은 $1.55{\mu}m$ 체적평균은 $8.20{\mu}m$ 조개 껍질 분말은 면적평균은 $2.53{\mu}m$ 체적평균은 $5.79{\mu}m$로 분석되었으며 쌀겨분말의 경우 막대(Rod)형상의 입자들이 관찰되었고, 조개 껍질 분말의 경우 판상(Plate)의 형상을 가지는 것으로 관찰되었다. CFRP에 첨가하였을 경우 첨가량에 비례하여 물성의 하락이 관찰되었는데 그 폭이 쌀겨분말의 경우가 가장 컸으며, 조개 껍질 분말의 경우 물성하락을 거의 유발하지 않음을 확인하였다.

희석기체가 화학증착 탄화규소의 성장거동에 미치는 영향 (The Effect of Diluent Gases on the Growth Behavior of CVD SiC)

  • 최두진;김한수
    • 한국세라믹학회지
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    • 제34권2호
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    • pp.131-138
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    • 1997
  • 희석기체로써 Ar 및 H2를 사용하여 MTS(CH3SiCl3)를 원료물질로 한 탄화규소막을 흑연 기판 위에 화학증착시켰다. 본 연구는 증착온도 130$0^{\circ}C$, 총압력은 10 torr 및 MTS와 원료 운반기체의 총유량은 100 sccm으로 일정하게한 상태에서, 각 희석기체의 첨가에 따른 성장거동의 변화를 고찰하고자 하였다. 증착속도는 희석기체와 상관없이 첨가량이 200sccm일 때 최대값을 갖는 모양을 보였으나, Ar을 첨가할 때가 H2에 비해 더 빠른 증착속도를 나타냈다. 이러한 증착속도 특성은 전체 증착속도가 물질전달 율속단계에 있을 때, 각 희석기체의 첨가에 따라 변화되는 경막 두께(boundary layer thickness) 및 원료물질 농도의 상관관계에 기인한다고 여겨졌다. 우선배향성은 Ar의 경우 모든 첨가량의 범위에서 (220)면으로 우선배향되었으나, H2의 경우에는 200sccm이상에서 첨가량에 비례하여 (111)면으로 우선배향되는 경향을 보였다. 표면미세구조는 Ar을 첨가한 경우에 일정하게 facet구조를 유지하였으나, H2의 경우에는 facet에서 평탄한(smooth)구조로 변화되었다. 표면조도의 경우 첨가량이 늘어남에 따라 지속적으로 Ar에서는 증가하였지만, H2에서는 감소하였다.

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피복입자핵연료에서 증착조건이 탄화규소층의 특성에 미치는 영향 (Effect of Deposition Parameters on the Property of Silicon Carbide Layer in Coated Particle Nuclear Fuels)

  • 김연구;김원주;여승환;조문성
    • 한국분말재료학회지
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    • 제23권5호
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    • pp.384-390
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    • 2016
  • Tri-isotropic (TRISO) coatings on zirconia surrogate beads are deposited using a fluidized-bed vapor deposition (FB-CVD) method. The silicon carbide layer is particularly important among the coated layers because it acts as a miniature pressure vessel and a diffusion barrier to gaseous and metallic fission products in the TRISO-coated particles. In this study, we obtain a nearly stoichiometric composition in the SiC layer coated at $1400^{\circ}C$, $1500^{\circ}C$, and $1400^{\circ}C$ with 20 vol.% methyltrichlorosilane (MTS), However, the composition of the SiC layer coated at $1300-1350^{\circ}C$ shows a difference from the stoichiometric ratio (1:1). The density decreases remarkably with decreasing SiC deposition temperature because of the nanosized pores. The high density of the SiC layer (${\geq}3.19g/cm^2$) easily obtained at $1500^{\circ}C$ and $1400^{\circ}C$ with 20 vol.% MTS did not change at an annealing temperature of $1900^{\circ}C$, simulating the reactor operating temperature. The evaluation of the mechanical properties is limited because of the inaccurate values of hardness and Young's modulus measured by the nano-indentation method.

CaO첨가가 렌즈 절삭용 실리콘카바이드재료의 기계적 특성에 미치는 영향 (Effect of CaO on Mechanical Properties of SiC materials for spectacle lens cutting)

  • 이영일;신동성
    • 한국안광학회지
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    • 제12권2호
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    • pp.19-23
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    • 2007
  • 안경렌즈 절삭용 탄화규소재료의 미세구조와 기계적 특성을 CaO를 첨가해서 연구하였다. 조성이 다른 4종류의 시편을 $1,880^{\circ}C$에서 4시간 일축가압소결 하였다. 주사전자현미경으로 미세구조를 분석하였고, X-ray를 통해 상분석을 하였다. 본 실험에서 연구된 안경렌즈 절삭공구의 대표적인 파괴인성은 $5.4MPa{\cdot}m^{1/2}$을 나타내었다. 또한, 경도값은 밀도값에 비례적인 경향성을 보여주었다.

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액상소결법에 의해 제조된 탄화규소 재료의 특성에 대한 연구 (A Study on Properties of SiC material Fabricated by Liquid Phase Sintering)

  • 이상필;곽재환;이진경
    • 한국산업융합학회 논문집
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    • 제26권6_2호
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    • pp.1019-1024
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    • 2023
  • Ceramic materials have excellent material properties such as stability at high temperatures, chemical stability, corrosion resistance, and wear resistance, so they are applicable even in extreme environments of high temperature and pressure. In particular, silicon carbide can be applied in the field of structural ceramics due to its characteristics of high strength, hardness, corrosion resistance, and heat resistance even at high temperatures. In this study, considering the application of silicon carbide materials to next-generation turbines, silicon carbide materials were manufactured using a liquid phase sintering method. When manufacturing liquid phase sintered silicon carbide, sintering additives were added to lower the sintering temperature and densify the material. In Al2O3-SiO2, it was confirmed that the secondary product of the sintering additive was observed as a slightly dark area and was evenly distributed overall, and the fracture surface of Al2O3-SiO2 was in the form of transgranular fracture in which cracks progressed along the crystal plane, and the flexural strength for Al2O3-SiO2 was about 445.6 MPa.

탄화 규소가 균일 분산된 규화 몰리브데넘계 복합재의 제조 (Fabrication of Molybdenum Silicide-based Composites with Uniformly Dispersed Silicon Carbide)

  • 최원준;박천웅;김영도;변종민
    • 한국분말재료학회지
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    • 제25권5호
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    • pp.402-407
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    • 2018
  • Molybdenum silicide has gained interest for high temperature structural applications. However, poor fracture toughness at room temperatures and low creep resistance at elevated temperatures have hindered its practical applications. This study uses a novel powder metallurgical approach applied to uniformly mixed molybdenum silicide-based composites with silicon carbide. The degree of powder mixing with different ball milling time is also demonstrated by Voronoi diagrams. Core-shell composite powder with Mo nanoparticles as the shell and ${\beta}-SiC$ as the core is prepared via chemical vapor transport. Using this prepared core-shell composite powder, the molybdenum silicide-based composites with uniformly dispersed ${\beta}-SiC$ are fabricated using pressureless sintering. The relative density of the specimens sintered at $1500^{\circ}C$ for 10 h is 97.1%, which is similar to pressure sintering owing to improved sinterability using Mo nanoparticles.

표면처리된 실리콘 카바이드 섬유 복합막의 고분자 전해질 막 연료전지 성능 (Performance of Modified-Silicon Carbide Fiber Composites Membrane for Polymer Exchange Membrane Fuel Cells)

  • 박정호;김태언;전소미;조용일;조광연;설용건
    • 한국수소및신에너지학회논문집
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    • 제25권1호
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    • pp.28-38
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    • 2014
  • The organic-inorganic composite membrane in polymer exchange membrane fuel cells (PEMFCs) have several fascinating technological advantages such as a proton conductivity, thermal stability and mechanical properties. As the inorganic filler, silicon carbide (SiC) fiber have been used in various fields due to its unique properties such as thermal stability, conductivity, and tensile strength. In this study, composite membrane was successfully fabricated by modified-silicon carbide fiber. Modified process, as a novel process in SiC, takes reaction by phosphoric acid after oxidation process (generated homogeniusly $SiO_2$ layer on SiC fiber). The mechanical property which was conducted by tensile test of the 5wt% modified-$SiO_2@SiCf$ composite membrane was better than that of Aquivion casting membrane as well as ion cxchange capacity(IEC) and proton conductivity. In addition, the single cell performance was observed that the 5wt% modified-$SiO_2@SiCf$ composite membrane was approximately $0.2A/cm^2$ higher than that of a Aquivion casting electrolyte membrane and electrochemical impedance was improved with the charge transfer resistance and membrane resistance.

열간가압소결법으로 제조한 탄화규소의 균열자기치유 특성 (Characterization of crack self-healing of silicon carbide by hot press sintering)

  • 김성훈;김경훈;도환수;박주석;김경자;심광보
    • 한국결정성장학회지
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    • 제26권2호
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    • pp.62-66
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    • 2016
  • 본 연구에서는 열간가압소결법으로 SiC를 소결하여 균열자기치유 특성을 분석하였다. SiC는 $Al_2O_3$$Y_2O_3$를 소결조제로 $1950^{\circ}C$, 50 MPa, 아르곤(Ar) 분위기에서 소결하였다. 소결된 시편을 $3{\times}4{\times}40mm$, 절단 및 가공하고, Vickers 경도기를 이용하여 49.6 N으로 예비균열을 생성하였다. $1200{\sim}1400^{\circ}C$, 1~10시간 산화분위기에서 열처리한 후 XRD, SEM, 3점 굽힘강도를 측정하였다. $1300^{\circ}C$ 1시간에서 741 MPa, 5시간에서 770 MPa로 가장 우수한 균열자기치유 효과를 나타내는 것으로 분석되었다.