• 제목/요약/키워드: Ceramic fracture

검색결과 835건 처리시간 0.03초

$Al_2O_3+Y_2O_3를 첨가한 {\beta}-SiC-TiB_2$ 복합체의 특성 (Properties of the $\beta-SiC-TiB_2$ Composites with $Al_2O_3+Y_2O_3$ additives)

  • 임승혁;신용덕;주진영;윤세원;송준태
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제49권7호
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    • pp.394-399
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    • 2000
  • The mechanical and electrical properties of pressed and annealed $\beta-SiC-TiB_2$ electroconductive ceramic composites were investigated as a function of the liquid forming additives of $Al_2O_3+Y_2O_3$. Phase analysis of composites by XRD revealed $\alpha$-SiC(6H), TiB2, and (Al5Y3O12). Reaction between Al2O3 and $Y_2O_3$ formed YAG but the relative density decreased with increasing $Al_2O_3+Y_2O_3$ contents. The Flexural strength showed the value of 458.9 MPa for composites added with 4 wt% $Al_2O_3+Y_2O_3$ additives at room temperatures. Owing to crack deflection and crack bridging, the fracture toughness showed 6.2, 6.0 and 6.6 MPa.m1/2 for composites added with 4, 8 and 12 wt% Al2O3+Y2O3 additives respectively at room temperature. The resistance temperature coefficient showed the value of $3.6\times10^{-3},\; 2.9\times10^{-3}\; and\; 3.0\times10^{-3} /^{\circ}C$$^{\circ}C$ for composite added with 4, 8 and 12 wt% $Al_2O_3+Y_2O_3$additives respectively at room temperature. The electrical resistivity of the composites was all positive temperature coefficient resistance(PTCR) in the temperature range of $25^{\circ}C\; to\; 700^{\circ}$.

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액상소결에 의한 $\beta-SiC-TiB_2$ 복합체의 제조와 특성 (Manufacture of $\beta-SiC-TiB_2$ Composites Densified by Liquid-Phase Sintering)

  • 신용덕;주진영;박미림;소병문;임승혁;송준태
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 추계학술대회 논문집 학회본부 C
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    • pp.479-481
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    • 2000
  • The effect of $Al_{2}O_{3}+Y_{2}O_{3}$ additives on fracture toughness of $\beta-SiC-TiB_2$ composites by hot-pressed sintering were investigated. The f$\beta-SiC-TiB_2$ ceramic composites were hot-presse sintered and annealed by adding 16, 20, 24wt% $Al_{2}O_{3}+Y_{2}O_{3}$(6 : 4wt%) powder as a liquid forming additives at low temperature($1800^{\circ}C$) for 4h. In this microstructures, the relative density is over 95.88% of the theoretical density and the porosity increased with increasing $Al_{2}O_{3}+Y_{2}O_{3}$ contents because of the increasing tendency of pore formation. The fracture toughness showed the highest of $5.88MPa{\cdot}m^{1/2}$ for composites added with 20wt% $Al_{2}O_{3}+Y_{2}O_{3}$ additives at room temperature. The electrical resistivity showed the lowest of $5.22{\times}10^{-4}\Omega{\cdot}cm$ for composite added with 20wt% $Al_{2}O_{3}+Y_{2}O_{3}$ additives at room temperature and is all positive temperature coefficient resistance (PTCR) against temperature up to $700^{\circ}C$.

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$\beta$-Sic-$ZrB_2$계 복합체에 미치는 YAG의 영향 (Effect of YAG on $\beta$-Sic-$ZrB_2$ Composites)

  • 황철;주진영;신용덕;이종덕;진홍범
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 C
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    • pp.1474-1476
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    • 2000
  • The mechanical and electrical properties of the hot-pressed and annealed $\beta$-Sic-$ZrB_2$ electroconductive ceramic composites were investigated as function of the liquid forming additives of $Al_{2}O_{3}+Y_{2}O_{3}$. Phase analysis of composites by XRD revealed $\alpha$-SiC(6H), $ZrB_2$, and YAG($Al_{5}Y_{3}O_{12}$). The relative density of composites were increased with increasing $Al_{2}O_{3}+Y_{2}O_{3}$ contents. The flexural strength showed the highest value of 390.6MPa for composites added with 20wt% $Al_{2}O_{3}+Y_{2}O_{3}$ additives at room temperature. Owing to crack deflection, crack bridging. phase transition and YAG of fracture toughness mechanism. the fracture toughness showed the highest value of 6.3MPa${\cdot}m^{1/2}$ for composites added with 24wt% $Al_{2}O_{3}+Y_{2}O_{3}$ additives at room temperature. The electrical resistivity of the composites was all positive temperature coefficient resistance (PTCR) in the temperature range of 25$^{\circ}C$ to 900$^{\circ}C$.

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방전플라즈마 소결 공정을 이용한 WC-Co-Mo2C 소재의 기계적 특성평가 (Mechanical Property Evaluation of WC-Co-Mo2C Hard Materials by a Spark Plasma Sintering Process)

  • 김주훈;박현국
    • 한국재료학회지
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    • 제31권7호
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    • pp.392-396
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    • 2021
  • Expensive PCBN or ceramic cutting tools are used for processing of difficult-to-cut materials such as Ti and Ni alloy materials. These tools have the problem of breaking easily due to their high hardness but low fracture toughness. To solve these problems, cutting tools that form various coating layers are used in low-cost WC-Co hard material tools, and research on various tool materials is being conducted. In this study, binderless-WC, WC-6 wt%Co, WC-6 wt%Co-1 wt% Mo2C, and WC-6 wt%Co-2.5 wt% Mo2C hard materials are densified using horizontal ball milled WC-Co, WC-Co-Mo2C powders, and spark plasma sintering process (SPS process). Each SPSed Binderless-WC, WC-6 wt%Co-1 wt% Mo2C, and WC-6 wt%Co-2.5 wt% Mo2C hard materials are almost completely dense, with relative density of up to 99.5 % after the simultaneous application of pressure of 60 MPa and almost no significant change in grain size. The average grain sizes of WC for Binderless-WC, WC-6 wt%Co-1 wt% Mo2C, and WC-6 wt%Co-2.5 wt% Mo2C hard materials are about 0.37, 0.6, 0.54, and 0.43 ㎛, respectively. Mechanical properties, microstructure, and phase analysis of SPSed Binderless-WC, WC-6 wt%Co-1 wt% Mo2C, and WC-6 wt%Co-2.5 wt% Mo2C hard materials are investigated.

Structural and Electrical Properties of (La,Nd,Sr)MnO3 Ceramics for NTC Thermistor Devices

  • Shin, Kyeong-Ha;Park, Byeong-Jun;Lim, Jeong-Eun;Lee, Sam-Haeng;Lee, Myung-Gyu;Park, Joo-Seok;Lee, Sung-Gap
    • 한국전기전자재료학회논문지
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    • 제35권3호
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    • pp.292-296
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    • 2022
  • (La0.5Nd0.2Sr0.3)MnO3 specimens were prepared by a solid-state reaction. In all specimens, X-ray diffraction patterns of an orthorhombic structure were shown. The fracture surfaces of (La0.5Nd0.2Sr0.3)MnO3 specimens showed a transgranular fracture pattern be possibly due to La ions (0.122 nm) as a perovskite A-site dopant substituting for Nd ions (0.115 nm) having a small ionic radius. The full-width at half maximum (FWHM) of the Mn 2p XPS spectra showed a value greater than that [8] of the single valence state, which is believed to be due to the overlapping of Mn2+, Mn3+, and Mn4+ ions. The dependence of Mn 2p spectra on the Mn3+/Mn4+ ratio according to sintering time was not observed. Electrical resistivity resulted in the minimum value of 100.7 Ω-cm for the specimen sintered for 9 hours. All specimens show a typical negative temperature coefficient of resistance (NTCR) characteristics. In the 9-hour sintered specimen, TCR, activation energy, and B25/65-value were -1.24%/℃, 0.19 eV, and 2,445 K, respectively.

치과용 지르코니아의 발전 (Development of dental zirconia)

  • 김성훈
    • 대한심미치과학회지
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    • 제32권1호
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    • pp.4-7
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    • 2023
  • 1990년대 말부터 치과보철 수복에 응용된 초창기 지르코니아는 코핑 형태로 사용되었다. 이렇게 만들어진 보철 수복물은 기존의 다른 심미 금속 수복물의 구조물이나 프레임 역할을 하는 금속이 없어서 자연스러움이 필요한 전치부에 성공적으로 사용되었으나 구치부에서는 기능중에 상부 비니어링 포세린의 파절로 그 사용에 한계가 있었다. 그후 여기에 대한 해결 방안으로 강한 코핑 재료를 전체 보철물의 형태로 제작하는 단일구조 지르코니아 수복물이 제안되었다. 이것은 강한 힘에 대한 저항은 뛰어나지만 매우 희고 불투명한 지르코니아의 특성상 조금은 비심미적인 결과를 나타내었다. 그러나, 현재는 지르코니아의 투명도를 높이는 기술적인 진보로 구치부뿐만 아니라 전치부에서 강하면서도 심미적인 지르코니아 수복물 제작이 가능하게 되었다. 이 논문에서는 지금까지 개발된 여러 종류의 지르코니아 재료의 구조적 특징을 알고 실제로 사용하고 있는 지르코니아 제품이 어디에 속하는지 설명한다.

지르코니아, 유리침투알루미나 및 PFM 전부관 시스템의 파절 경향에 관한 비교연구 (A comparative study on the fracture behavior of zironia, glass infiltrated alumina and PFM full crown system)

  • 이상혁;안진수;김명호;임범순
    • 대한치과보철학회지
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    • 제50권4호
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    • pp.235-242
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    • 2012
  • 연구 목적: 본 연구는 지르코니아, 유리침투알루미나 및 금속도재소부용치관의 파절강도를 비교하고자 하였다. 연구 재료 및 방법: 지르코니아, 유리침투알루미나 및 금속도재소부용합금으로 각각 15개의 치관을 제작한 후, 제작된 치관을 장축에 $30^{\circ}$ 경사지게 제작된 지그에 장착하여 만능시험기로 파절강도를 측정하였으며, 전단결합강도 시험을 위하여 지르코니아, 유리침투알루미나 및 금속도재소부용합금을 $5.5({\phi}){\times}2.5mm$ 크기로 제작하고 포세린 분말을 $3.5({\phi}){\times}2.5mm$ 크기로 축성한 후 제조사의 설명서에 따라 전기로(Ceramco 7, Dentsply, USA)에서 소결하여 총10개의 시편을 제작하였다. 결과: 전부관 형태로 제작한 시편의 파절강도는 금속-도재 시스템이 $569.1{\pm}61.8N$, 알루미나-도재 시스템이 $551.0{\pm}76.5N$ 및 지르코니아-도재 시스템이 $588.3{\pm}49.6N$으로 측정되었으며, 각 실험군간 유의한 차이는 없었다(P>.05). 전단결합강도는 금속-도재 시스템이 $38.9{\pm}5.0MPa$, 알루미나-도재 시스템이 $39.4{\pm}5.1MPa$, 지르코니아-도재 시스템이 $25.5{\pm}5.6MPa$로 지르코니아-도재 시스템이 다른 두 시스템 보다 유의하게 낮은 값을 보였다(P<.05). 금속-도재 시스템, 알루미나-도재 시스템 및 지르코니아-도재 시스템의 각 결합계면을 SEM/EDS로 분석한 결과 각 시스템에서 상이한 결합 양상이 관찰되었다. 결론: 본 연구 결과 지르코니아-도재 시스템의 파절강도가 제일 높았으며, 금속-도재 시스템, 알루미나-도재 시스템 순서로 나타났으며, 전단결합강도는 알루미나-도재 시스템이 제일 높았고 금속-도재 시스템, 지르코니아-도재 시스템 순서으로 나타났다.

Sintered-reaction Bonded Silicon Nitride Densified by a Gas Pressure Sintering Process - Effects of Rare Earth Oxide Sintering Additives

  • Lee, Sea-Hoon;Ko, Jae-Woong;Park, Young-Jo;Kim, Hai-Doo;Lin, Hua-Tay;Becher, Paul
    • 한국세라믹학회지
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    • 제49권4호
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    • pp.318-324
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    • 2012
  • Reaction-bonded silicon nitrides containing rare-earth oxide sintering additives were densified by gas pressure sintering. The sintering behavior, microstructure and mechanical properties of the resultant specimens were analyzed. For that purpose, $Lu_2O_3-SiO_2$ (US), $La_2O_3$-MgO (AM) and $Y_2O_3-Al_2O_3$ (YA) additive systems were selected. Among the tested compositions, densification of silicon nitride occurred at the lowest temperature when using the $La_2O_3$-MgO system. Since the $Lu_2O_3-SiO_2$ system has the highest melting temperature, full densification could not be achieved after sintering at $1950^{\circ}C$. However, the system had a reasonably high bending strength of 527 MPa at $1200^{\circ}C$ in air and a high fracture toughness of 9.2 $MPa{\cdot}m^{1/2}$. The $Y_2O_3-Al_2O_3$ system had the highest room temperature bending strength of 1.2 GPa.

핵연료 피복관용 다중층 SiC 복합체 튜브의 Hoop Stress 전산모사 연구 (FEA Study on Hoop Stress of Multilayered SiC Composite Tube for Nuclear Fuel Cladding)

  • 이현근;김대종;박지연;김원주
    • 한국세라믹학회지
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    • 제51권5호
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    • pp.435-441
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    • 2014
  • Silicon carbide-based ceramics and their composites have been studied for application to fusion and advanced fission energy systems. For fission reactors, $SiC_f$/SiC composites can be applied to core structural materials. Multilayered SiC composite fuel cladding, owing to its superior high temperature strength and low hydrogen generation under severe accident conditions, is a candidate for the replacement of zirconium alloy cladding. The SiC composite cladding has to retain its mechanical properties and original structure under the inner pressure caused by fission products; as such it can be applied as a cladding in fission reactor. A hoop strength test using an expandable polyurethane plug was designed in order to evaluate the mechanical properties of the fuel cladding. In this paper, a hoop strength test of the multilayered SiC composite tube for nuclear fuel cladding was simulated using FEA. The stress caused by the plug was distributed nonuniformly because of the friction coefficient difference between the inner surface of the tube and the plug. Hoop stress and shear stress at the tube was evaluated and the relationship between the concentrated stress at the inner layer of the tube and the fracture behavior of the tube was investigated.

20 nm 두께의 ITO층이 코팅된 ITO/PET Sheet의 저항 및 균열형성 특성 연구 (A Study on the Resistance and Crack Propagation of ITO/PET Sheet with 20 nm Thick ITO Film)

  • 김진열;홍순익
    • 한국세라믹학회지
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    • 제46권1호
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    • pp.86-93
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    • 2009
  • The crack formation and the resistance of ITO film on PET substrate with a thickness of 20 nm were investigated as a function of strain. The onset strain for the increase of resistance increased with increasing strain rate, suggesting the crack initiation is dependent on the strain rate. Electrical resistance increased at the strain of 1.6% at the strain rates below $10^{-4}/sec$ while it increased at ${\sim}2%$ at the strain rates above $10^{-3}/sec$. The critical strain at which the cracks were formed is close to the proportional limit. Upon loading, the initial cracks perpendicular to the tensile axis were observed and propagated the whole sample width with increasing strain. The spacing between horizontal cracks is thought to be determined by the fracture strength and the interfacial strength between ITO and PET. The crack density increased with increasing strain. However, the effect of the strain rate on the crack density was less pronounced in ITO/PET with 20 nm ITO thickness than ITO/PET with 125 nm ITO thickness, the strength of ITO film is thought to increase as the thickness on ITO film decreases. The absence of cracks on ITO film at a strain as close as 1.5% can be attributed to the compressive residual stress of ITO film which was developed during cooling after the coating process. The higher critical strain for the onset of the resistance increase and the crack initiation of ITO/PET with a thinner ITO film (20 nm) can be linked with the higher strength of the thinner ITO film.