• 제목/요약/키워드: Thermal shock resistance

검색결과 173건 처리시간 0.027초

Thermodynamic analysis on the chemical vapor deposition process of Ta-C-H-Cl system

  • Kim, Hyun-Mi;Shim, Kwang Bo;Lee, Jung-Min;Lee, Hyung-Ik;Choi, Kyoon
    • Journal of Ceramic Processing Research
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    • 제19권6호
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    • pp.519-524
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    • 2018
  • Carbon/carbon composites (C/C) have been widely studied in the aerospace field because of their excellent thermal shock resistance and specific strength at high temperature. However, they have the problems that is easily oxidized and deteriorated under atmospheric environment. In order to overcome these shortcomings, the CVD coating of ultra-high-temperature ceramics to C/C has become an important technical issue. In this study, thermodynamic calculations were performed to TaC CVD coating on C/C by FactSage 6.2 program. The Ta-C phase diagrams were constructed with the results of thermodynamic calculations in the Ta-C-H-Cl system. Based on the Ta-C phase diagram, the experimental conditions were designed to confirm the deposition of various phases such as TaC single phase, TaC + C and $TaC+Ta_2C$ by varying the composition of Ta/C ratio. The deposited films were found to be in good agreement with the predicted phases.

초고온 소재용 ZrB2계 복합소재의 제조 (Fabrication of ZrB2-based Composites for Ultra-high Temperature Materials)

  • 김성원;채정민;이성민;오윤석;김형태;남산
    • 한국분말재료학회지
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    • 제16권6호
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    • pp.442-448
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    • 2009
  • $ZrB_2$-based composites are candidate materials for ultra-high temperature materials (UHTMs). $ZrB_2$ has become an indispensable ingredient in UHTMs, due to its high melting temperature, relatively low density, and excellent resistance to thermal shock or oxidation. $ZrB_2$ powders are usually synthesized by solid state reactions such as carbothermal, borothermal, or combined carbothermal reaction. SiC is added to this system in order to enhance the oxidation resistance of $ZrB_2$. In this study, $ZrB_2$?based composites were successfully synthesized and densified through two different processing paths. $ZrB_2$ or $ZrB_2$ 25 vol.%SiC was fully synthesized from oxide starting materials with reducing agents after heat treatment at 1400$^{\circ}C$. Besides, $ZrB_2$?20 vol.%SiC was fully densified with $B_4C$ as a sintering additive after hot pressing at 1900$^{\circ}C$. The synthesis mechanism and the effect of sintering additives on densification of $ZrB_2$ ?SiC composites were also discussed.

치밀층으로 코팅된 다공성 엔지니어링 세라믹스에서의 접촉응력에 의한 균열 거동 (Cracking Behavior Under Contact Stress in Densely Coated Porous Engineering Ceramics)

  • 김상겸;김태우;김도경;이기성
    • 한국세라믹학회지
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    • 제42권8호
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    • pp.554-560
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    • 2005
  • The engineering ceramic needs the properties of high strength, hardness, corrosion-resistance and heat-resistance in order to withstand thermal shock or applied nonuniform stresses without failure. The densely coated porous ceramics can be used for machine component, electromagnetic component, bio-system component and energy-system component by their high-performances from superior coating properties and light-weight characteristics due to the structure including pore by itself. In this study we controlled the porosity of silica and alumina, $8.2\~25.4\%$ and $23.4\~36.0\%$, respectively, by the control of sintering temperature and starting powder size. We made bilayer structures, consisting of a transparent glass coating layer bonded to a thick substrate of different porous ceramics by a thin layer of epoxy adhesive, facilitated observations of crack initiation and propagation. The elastic modulus mismatch could be controlled using different porous ceramics as the substrate layer. Then we applied 150 N force using WC sphere with a radius of 3.18 mm by Hertzian indentation. As a result, the crack initiation in the coating layer was delayed at lower porosity in the substrate layer, and the damage in the coating layer was relatively smaller at the bilayer structure coated on higher elastic substrate.

ZrB2-SiC 세라믹스의 미세구조와 기계적 물성에 미치는 B4C 첨가효과 (Effect of B4C Addition on the Microstructures and Mechanical Properties of ZrB2-SiC Ceramics)

  • 채정민;이성민;오윤석;김형태;김경자;남산;김성원
    • 한국세라믹학회지
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    • 제47권6호
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    • pp.578-582
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    • 2010
  • $ZrB_2$ has a melting point of $3245^{\circ}C$ and a relatively low density of $6.1\;g/cm^3$, which makes this a candidate for application to ultrahigh temperature environments over $2000^{\circ}C$. Beside these properties, $ZrB_2$ is known to have excellent resistance to thermal shock and oxidation compared with other non-oxide engineering ceramics. In order to enhance such oxidation resistance, SiC was frequently added to $ZrB_2$-based systems. Due to nonsinterability of $ZrB_2$-based ceramics, research on the sintering aids such as $B_4C$ or $MoSi_2$ becomes popular recently. In this study, densification and high-temperature properties of $ZrB_2$-SiC ceramics especially with $B_4C$ are investigated. $ZrB_2$-20 vol% SiC system was selected as a basic composition and $B_4C$ or C was added to this system in some extents. Mixed powders were sintered using hot pressing (HP). With sintered bodies, densification behavior and high-temperature (up to $1400^{\circ}C$) properties such as flexural strength, hardness, and so on were examined.

NANO-SIZED COMPOSITE MATERIALS WITH HIGH PERFORMANCE

  • Niihara, N.;Choa, H.Y.;Sekino, T.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 1996년도 추계학술강연 및 발표대회 강연 및 발표논문 초록집
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    • pp.6-6
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    • 1996
  • Ceramic based nanocomposite, in which nano-sized ceramics and metals were dispersed within matrix grains and/or at grain boundaries, were successfully fabricated in the ceramic/cerarnic and ceramic/metal composite systems such as $Al_2O_3$/SiC, $Al_2O_3$/$Si_3N_4$, MgO/SiC, mullite/SiC, $Si_3N_4/SiC, $Si_3N_4$/B, $Al_2O_3$/W, $Al_2O_3$/Mo, $Al_2O_3$/Ni and $ZrO_2$/Mo systems. In these systems, the ceramiclceramic composites were fabricated from homogeneously mixed powders, powders with thin coatings of the second phases and amorphous precursor composite powders by usual powder metallurgical methods. The ceramiclmetal nanocomposites were prepared by combination of H2 reduction of metal oxides in the early stage of sinterings and usual powder metallurgical processes. The transmission electron microscopic observation for the $Al_2O_3$/SiC nanocomposite indicated that the second phases less than 70nm were mainly located within matrix grains and the larger particles were dispersed at the grain boundaries. The similar observation was also identified for other cerarnic/ceramic and ceramiclmetal nanocornposites. The striking findings in these nanocomposites were that mechanical properties were significantly improved by the nano-sized dispersion from 5 to 10 vol% even at high temperatures. For example, the improvement in hcture strength by 2 to 5 times and in creep resistance by 2 to 4 orders was observed not only for the ceramidceramic nanocomposites but also for the ceramiclmetal nanocomposites with only 5~01%se cond phase. The newly developed silicon nitride/boron nitride nanocomposites, in which nano-sized hexagonal BN particulates with low Young's modulus and fracture strength were dispersed mainly within matrix grains, gave also the strong improvement in fracture strength and thermal shock fracture resistance. In presentation, the process-rnicro/nanostructure-properties relationship will be presented in detail. The special emphasis will be placed on the understanding of the roles of nano-sized dispersions on mechanical properties.

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PVA를 이용한 Solution-Polymerization 합성법에 의한 Mullite-Cordierite 복합분말의 합성 (A Synthesis of Mullite-Cordierite Composite Powders by Solution-Polymerization Route Based on Polyvinyl Alcohol)

  • 이용석;이병하
    • 한국세라믹학회지
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    • 제41권9호
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    • pp.663-669
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    • 2004
  • Mullite와 cordierite는 우수한 열적, 화학적 특성을 나타내는 안정된 산화물로서 다양한 구조재료 및 전자재료에 사용되어지고 있으나, mullite의 경우 내열충격성이, cordierite의 경우 고온강도가 떨어지는 단점이 있다. 이와 같은 단점을 서로 보완하기 위한 mullite-cordierite 복합체에 대한 연구가 진행되고 있다 본 연구에서는 fused silica, aluminium nitrate, magnesium nitrate와 PVA의 혼합을 이용한 solution-polymerization 합성법에 의해, mullite-cordierite복합분말을 합성하고 생성상 및 결정성, 밀도 및 비표면적 등의 특성을 분석하였다 그 결과, 본 실험의 모든 조성에서 있어서 130$0^{\circ}C$로 열처리하였을 경우, mullite와 cordierite의 상이 공존하는 복합분말이 생성되는 것을 확인할 수 있었다. 이 mullite-cordierite복합 분말을 planetary milli로 1시간 분쇄하였을 때 비표면적은 약 20 $m^2$/g로서 미립의 분말이 확인되어졌고, 분쇄시간의 증가에 따라 4시간에서는 23$m^2$/g, 8시간에서는 24$m^2$/g로 비표면적이 증가하였다.

초고온용 ZrB2-계 세라믹스의 치밀화와 물성 (Densification and Properties of ZrB2-based Ceramics for Ultra-high Temperature Applications)

  • 김성원;김형태;김경자;서원선
    • 한국정밀공학회지
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    • 제29권3호
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    • pp.273-278
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    • 2012
  • $ZrB_2$ has a melting temperature of $3245^{\circ}C$ and a low density of $6.1\;g/cm^3$, which makes this a candidate for application to ultra-high temperature over $2000^{\circ}C$. Beside these properties, $ZrB_2$ has excellent resistance to thermal shock and oxidation compared with other non-oxide engineering ceramics. This paper reviewed briefly 2 research examples, which are related to densification and properties of $ZrB_2$-based ceramics for ultra-high temperature applications. In the first section, the effect of $B_4C$ addition on the densification and properties of $ZrB_2$-based ceramics is shown. $ZrB_2$-20 vol.% SiC system was selected as a basic composition and $B_4C$ or C was added to this system in some extents. With sintered bodies, densification behavior and hightemperature (up to $1400^{\circ}C$) properties such as bending strength and hardness are examined. In the second section, the effect of the SiC size on the microstructures and physical properties is shown. $ZrB_2$-SiC ceramics are fabricated by using various SiC sources in order to investigate the grain-growth inhibition and the mechanical/thermal properties of $ZrB_2$-SiC.

분무건조법에 의한 용사용 원적외선 세라믹/AI 복합분말제조 및 용사층의 특성 (Fabrication of Far-Infrared Ceramic/AI Composite Powders by Spray Drying Method and Characteristics of the Plasma Sprayed Coating Layer)

  • 홍성준;김병희;민재웅;송병길;노재승;서동수
    • 한국재료학회지
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    • 제9권12호
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    • pp.1205-1210
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    • 1999
  • 분무건조법으로 용사용 원적외선 세라믹/알루미늄 복합분말을 제조하여 플라즈마 용사법으로 알루미늄 모재에 용사한 후, 미세구조, 결정상, 열충격저항성 그리고 분광복사율을 조사하였다. 분무건조된 복합분말의 입형은 구형으로 34~105${\mu}m $. 영역에서 높은 복사율을 보였다. 그러나 알루미늄 첨가량이 증가할수록 원적외선 방사특성은 감소하였다. 결과적으로 용사법으로 원적외선 방사특성의 큰 손실 없이 방사체를 제조하기 위해서는 20~30%wt%Al를 첨가하여 복합분말을 제조하는 것이 가장 효율적이라고 판단된다.

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Press-fit 단자 접합특성 및 신뢰성 (Bonding Property and Reliability for Press-fit Interconnection)

  • 오상주;김다정;홍원식;오철민
    • 마이크로전자및패키징학회지
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    • 제26권3호
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    • pp.63-69
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    • 2019
  • 전자부품에 대한 보드실장은 아직까지 솔더를 이용한 접합기술을 주로 이용하고 있다. 그러나, 솔더의 크? 및 피로특성으로 인한 접합부 내구한계로, 자동차 전장모듈에서는 반영구적인 접합기술인 프레스 핏(Press-fit) 접합기술 적용을 확대하고 있다. 프레스 핏 접합은 프레스 핏 금속단자를 보드내 쓰루 홀(Through hole)에 기계적으로 삽입하여 체결하는 접합기술로써, 적절한 금속단자의 소성변형으로 쓰루 홀 내부 표면접합을 밀착시킴으로써 강건한 접합을 유도한다. 본 논문에서는 보드내 쓰루 홀 크기 및 표면처리에 따른 프레스 핏 접합 특성 및 신뢰성을 솔더링과 함께 비교하기 위해, 보드 쓰루 홀 크기에 따른 삽입강도 및 삽발강도를 평가하였으며, 열충격 시험을 통한 실시간 저항변화를 통해 프레스 핏 및 솔더링 접합부의 저항변화를 관찰하였다. 또한, 각 접합부위 분석을 통한 프레스 핏 및 솔더링 접합열화를 분석하여 주요 파손모드를 고찰하고자 하였다.

지르코니아-알루미나 세라믹 복합재료에 관한 연구 (A Study on the Alumina Ceramic Composite Dispersed With the Zirconia)

  • 박재성;이영신
    • 전자공학회논문지 IE
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    • 제49권2호
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    • pp.1-8
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    • 2012
  • 단사정 구조의 순수 $ZrO_2$ 또는 5.35wt%의 $Y_2O_3$를 첨가한 정방정 구조의 $Y_2O_3(Y-TZP)$$Al_2O_3$에 첨가하여 그 기계적 특성 및 열충격 저항성을 연구하였다. $ZrO_2(m)$와 Y-TZP의 첨가량이 커짐에 따라 $Al_2O_3$의 소결 밀도가 증가하였다. 또한 Y-TZP의 첨가량이 증가함에 따라 비커스 경도도 증가하였고 첨가량 20wt%에서 최고값을 나타내었다. 시편의 경도는 소결 밀도에 의존함을 알 수 있었다. $ZrO_2(m)$나 Y-TZP 첨가량의 증가는 파괴인성을 향상시키는 결과를 얻을 수 있었다. 이러한 결과로 $Al_2O_3$의 경도는 $ZrO_2$의 transformation toughening 뿐 아니라 미세균열 강화에서도 얻어짐을 알 수 있었다. 단사정 구조의 순수 $ZrO_2$의 첨가는 $Al_2O_3-ZrO_2$의 열 충격 저항성을 향상시켰다. 결정입도는 $ZrO_2$의 첨가량이 증가함에 따라 커진다.