• 제목/요약/키워드: Ceramic matrix composite

검색결과 238건 처리시간 0.032초

폐석분을 사용한 시멘트 2차 제품의 물리적 특성에 관한 연구 (A Study on the Variation of Physical Properties on the Secondary Product of Cement by Using Crushed Stone Powder)

  • 박지선;이세현;송훈
    • 한국건설순환자원학회논문집
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    • 제6권4호
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    • pp.103-111
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    • 2012
  • 압축강도 50 MPa이상의 압출성형 시멘트 패널은 고온고압 증기양생으로 생산된다. 고온고압 증기양생에서 요구 강도를 얻기 위해서는 시멘트에 포함되어 있는 CaO와의 반응에 필요한 적정량의 $SiO_2$를 공급하는 것이 관건이다. $SiO_2$의 공급원으로 가장 널리 사용되는 원료는 규석분인데, 이는 환경파괴를 전제로 하기 때문에 친환경적인 제품 생산을 위하여 본 연구에서는 규석분을 대신하여 폐석분을 활용한 시멘트 2차 제품을 생산하고 이에 대한 압출성과 물리적인 특성비교를 실시하였다. 이를 위하여 화성 석산에서 채취한 폐석분을 건조 파쇄한 후 이를 규석분 사용량의 최대 50%까지 치환하여 압출성 및 물리적 특성 실험을 수행하였다. 실험결과 평균 입경은 폐석분과 규석분의 크기가 유사하였으나 물리적 특성은 규석분을 폐석분으로 단순 치환하였을 경우, 대부분 낮게 발현되었다. 따라서 폐석분을 활용할 경우 수화활성을 위한 첨가제 등의 활용이 필요할 것으로 판단된다.

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The Development of an Electroconductive SiC-ZrB2 Composite through Spark Plasma Sintering under Argon Atmosphere

  • Lee, Jung-Hoon;Ju, Jin-Young;Kim, Cheol-Ho;Park, Jin-Hyoung;Lee, Hee-Seung;Shin, Yong-Deok
    • Journal of Electrical Engineering and Technology
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    • 제5권2호
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    • pp.342-351
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    • 2010
  • The SiC-$ZrB_2$ composites were fabricated by combining 30, 35, 40, 45 and 50 vol. % of zirconium diboride ($ZrB_2$) powders with silicon carbide (SiC) matrix. The SiC-$ZrB_2$ composites and the sintered compacts were produced through spark plasma sintering (SPS) under argon atmosphere, and its physical, electrical, and mechanical properties were examined. Also, the thermal image analysis of the SiC-$ZrB_2$ composites was examined. Reactions between $\beta$-SiC and $ZrB_2$ were not observed via x-ray diffraction (XRD) analysis. The apparent porosity of the SiC+30vol.%$ZrB_2$, SiC+35vol.%$ZrB_2$, SiC+40vol.%$ZrB_2$, SiC+45vol.%$ZrB_2$ and SiC+50vol.%$ZrB_2$ composites were 7.2546, 0.8920, 0.6038, 1.0981, and 10.0108%, respectively. The XRD phase analysis of the sintered compacts demonstrated a high phase of SiC and $ZrB_2$. Among the $SiC+ZrB_2$ composites, the SiC+50vol.%$ZrB_2$ composite had the lowest flexural strength, 290.54MPa, the other composites had more than 980MPa flexural strength except the SiC+30vol.%$ZrB_2$ composite; the SiC+40vol.%$ZrB_2$ composite had the highest flexural strength, 1011.34MPa, at room temperature. The electrical properties of the SiC-$ZrB_2$ composites had positive temperature coefficient resistance (PTCR). The V-I characteristics of the SiC-$ZrB_2$ composites had a linear shape in the temperature range from room to $500^{\circ}C$. The electrical resistivities of the SiC+30vol.%$ZrB_2$, SiC+35vol.%$ZrB_2$, SiC+40vol.%$ZrB_2$ SiC+45vol.%$ZrB_2$ and SiC+50vol.%$ZrB_2$ composites were $4.573\times10^{-3}$, $1.554\times10^{-3}$, $9.365\times10^{-4}$, $6.999\times10^{-4}$, and $6.069\times10^{-4}\Omega{\cdot}cm$, respectively, at room temperature, and their resistance temperature coefficients were $1.896\times10^{-3}$, $3.064\times10^{-3}$, $3.169\times10^{-3}$, $3.097\times10^{-3}$, and $3.418\times10^{-3}/^{\circ}C$ in the temperature range from room to $500^{\circ}C$, respectively. Therefore, it is considered that among the sintered compacts the SiC+35vol.%$ZrB_2$, SiC+40vol.%$ZrB_2$ and SiC+45vol.%$ZrB_2$ composites containing the most outstanding mechanical properties as well as PTCR and V-I characteristics can be used as an energy friendly ceramic heater or ohmic-contact electrode material through SPS.

SiC/SiC 복합재료 세라믹스 표면균열 탐지를 위한 초음파법 적용에 관한 기초연구 (A Feasibility Study on the Application of Ultrasonic Method for Surface Crack Detection of SiC/SiC Composite Ceramics)

  • 남기우;이건찬;향산황
    • 비파괴검사학회지
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    • 제29권5호
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    • pp.479-484
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    • 2009
  • 세라믹스의 비파괴평가 기술은 산업분야에 응용하기 위한 세라믹스 신뢰성 개발에 있어서 필수적인 기술이다. 본 연구는 초음파 C-Scan 방식을 이용하여 SiC 세라믹스의 표면균열을 탐상하기 위한 실험적 연구 결과를 제시하고자 한다. 이를 위해 SDS-win과 $\mu$-SDS 두 종류의 초음파 장치와 25, 50 및 125 MHz의 초음파센서를 이용하여 세라믹스의 표면균열 탐상 가능성에 대해 실험적인 연구를 수행하였다. 본 연구 결과, 세라믹스의 표면미소균열은 결국 25 및 50 MHz 센스로 정밀하게 검출할 수 없었으나, 125 MHz 센서에 의한 집속법 탐상 결과 희미한 형상 정도를 검출할 수 있었으며, 비집속법의 경우는 비커스 압입자의 형상 검출이 가능함을 알 수 있었다. 따라서 본 연구를 통하여, 초음파 C-Scan 집속 및 비집속 방법은 미세균열의 탐상방식으로 어느 정도 접근 가능함을 실험적으로 확인하였다

Evaluation of Mechanical Properties and Microstructural Behavior of Sintered WC-7.5wt%Co and WC-12wt%Co Cemented Carbides

  • ;송준우;탁병진;홍현선;홍순직
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.58.1-58.1
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    • 2011
  • WC-Co and other similar cemented carbides have been widely used as hard materials in industrial cutting tools and as mould metals; and a number of techniques have been applied to improve its microstructural characteristics, hardness and ear resistance. Cobalt is used primarily to facilitate liquid phase sintering and acts as a matrix, i.e. a cementing phase between WC grains. A uniform distribution of metal phase in a ceramic is beneficial for improved mechanical properties of the composite. WC-Co, starting from initial powders, is vastly used for a variety of machining, cutting, drilling, and other applications because of its unique combination of high strength, high hardness, high toughness, and moderate modulus of elasticity, especially with fine grained WC and finely distributed cobalt. In this study, that started with two different compositions of initial powders, WC-7.5wt%Co and WC-12wt%Co with initial powder size being 1~3 ${\mu}m$, magnetic pulsed compaction followed by subsequent vacuum sintering were carried out to produce consolidated preforms. Magnetic Pulsed Compaction (MPC), a very short duration (~600 ${\mu}s$), high pressure (~4 Gpa), high-density preform molding method was used with varied pressure between 0.5 and 3.0 Gpa, in order to reach an initial high density that would help improve the sintering behavior. For both compositions and varied MPC pressure, before and after sintering, changes in microstructural behavior and mechanical properties were analyzed. With proper combination of MPC pressure and sintering, samples were obtained with better mechanical properties, densification and microstructural behavior, and considerably improved than other conventional processes.

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탈지방탈회우골분말과 Polymethyl Methacrylate(PMMA) Bone Cement 혼합제에 관한 연구 (STUDY OF POLYMETHYL METHACRYLATE BONE CEMENT CONTAINING BOVINE-DERIVED DEFATTING DEMINERALIZED BONE POWDER)

  • 김운규;김수관;조세인;고영무;윤정훈;안종모
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제27권6호
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    • pp.491-497
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    • 2001
  • Polymethylmethacrylate(PMMA) is currently commonly used material for the reconstruction of bone defects and fixation of joint prosthetics following congenital and acquired causes. Although PMMA has widespread use, it does not possess the ideal mechanical characteristics with osteoconductivity and osteoinductivity required. In order to overcome these problem, addition of bovine bone drived defatting demineralized bone(BDB) powders to a PMMA bone cement was done for improvement of physical property and bone forming characteristics of composite. In order to investigate the influence of BDB reinforcement on the PMMA, we measured physical property of compressive, tensile, flexural strength, and scanning electron microscopic examinations. The results were obtained as follows: 1. The PMMA forms a solid cellular matrix with open cells about $100{\mu}m$ in variable size and incorporating BDB. BDB aggregates inside the cells form a porous network that is accessible from the outer surface. 2. The physical properties were compressive strength of mean $22.74{\pm}1.69MPa$, tensile strength of mean $22.74{\pm}1.69MPa$, flexural strength of mean $77.53{\pm}6.93MPa$. Scanning electron microscopic examinations were revealed that there was DBD particles form a highly porous agglomerates. BDB can be added PMMA in the form of dried powders, the composites are applicable as bone substitutes. BDB and PMMA mixture is shown to produce a class of composites that due to their microstructure and improved mechanical properties may be suitable for application as bone subsitutes. The mechanical and material properties of the BDB-PMMA bone substitute composites are competitive with those properties of a porous ceramic matrix of other hydroxyapatite and with those of natural bones.

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Ru-Co가 치환된 M-형 육방정 페라이트(BaFe12-2xRuxCoxO19)의 자기적 성질 및 전파흡수 특성 (Magnetic and Microwave Absorbing Properties of M-type Hexagonal Ferrites Substituted by Ru-Co(BaFe12-2xRuxCoxO19))

  • 조한신;김성수
    • 한국자기학회지
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    • 제18권4호
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    • pp.136-141
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    • 2008
  • Ru-Co가 복합 치환된 M-type Ba-ferrite($BaFe_{12-2x}Ru_xCo_xO_{19}$)의 치환량 x의 변화에 따른 자기적 특성과 전파흡수 특성에 관해 조사하였다. 기존의 Ti-Co를 치환시킨 경우보다 적은 양의 치환(x=0.3)으로 면내 자기이방성을 보이는 낮은 보자력($H_c$)과 높은 포화자화($M_s$) 값을 얻을 수 있었다. 따라서 Ru-Co 치환량 조절에 의해 GHz 대역에서 자연공명주파수의 조절이 가능하였다. 소결체 및 복합체에서 흡수 주파수 대역은 보자력이 증가할수록 고주파 대역으로 이동한다. 복합체에서 페라이트 혼합량이 증가함에 따라 복소투자율과 복소유전율의 값이 증가하기 때문에 정합주파수는 저주파 대역으로 이동한다. 이러한 특성들을 이용하여 순수한 M-형 육방정 페라이트에 Ru-Co의 치환량, 복합체에서 페라이트 분말의 혼합량, 그리고 흡수체의 두께의 제어를 통하여 GHz 주파수 대역에서 양호한 전자파 흡수체, 노이즈 감쇠재의 제조가 가능함을 제시할 수 있다.

Stellite bearings for liquid Zn-/Al-Systems with advanced chemical and physical properties by Mechanical Alloying and Standard-PM-Route

  • Zoz, H.;Benz, H.U.;Huettebraeucker, K.;Furken, L.;Ren, H.;Reichardt, R.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2000년도 춘계학술강연 및 발표대회 강연 및 발표논문 초록집
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    • pp.9-10
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    • 2000
  • An important business-field of world-wide steel-industry is the coating of thin metal-sheets with zinc, zinc-aluminum and aluminum based materials. These products mostly go into automotive industry. in particular for the car-body. into building and construction industry as well as household appliances. Due to mass-production, the processing is done in large continuously operating plants where the mostly cold-rolled metal-strip as the substrate is handled in coils up to 40 tons unwind before and rolled up again after passing the processing plant which includes cleaning, annealing, hot-dip galvanizing / aluminizing and chemical treatment. In the liquid Zn, Zn-AI, AI-Zn and AI-Si bathes a combined action of corrosion and wear under high temperature and high stress onto the transfer components (rolls) accounts for major economic losses. Most critical here are the bearing systems of these rolls operating in the liquid system. Rolls in liquid system can not be avoided as they are needed to transfer the steel-strip into and out of the crucible. Since several years, ceramic roller bearings are tested here [1.2], however, in particular due to uncontrollable Slag-impurities within the hot bath [3], slide bearings are still expected to be of a higher potential [4]. The today's state of the art is the application of slide bearings based on Stellite\ulcorneragainst Stellite which is in general a 50-60 wt% Co-matrix with incorporated Cr- and W-carbides and other composites. Indeed Stellite is used as the bearing-material as of it's chemical properties (does not go into solution), the physical properties in particular with poor lubricating properties are not satisfying at all. To increase the Sliding behavior in the bearing system, about 0.15-0.2 wt% of lead has been added into the hot-bath in the past. Due to environmental regulations. this had to be reduced dramatically_ This together with the heavily increasing production rates expressed by increased velocity of the substrate-steel-band up to 200 m/min and increased tractate power up to 10 tons in modern plants. leads to life times of the bearings of a few up to several days only. To improve this situation. the Mechanical Alloying (MA) TeChnique [5.6.7.8] is used to prOduce advanced Stellite-based bearing materials. A lubricating phase is introduced into Stellite-powder-material by MA, the composite-powder-particles are coated by High Energy Milling (HEM) in order to produce bearing-bushes of approximately 12 kg by Sintering, Liquid Phase Sintering (LPS) and Hot Isostatic Pressing (HIP). The chemical and physical behavior of samples as well as the bearing systems in the hot galvanizing / aluminizing plant are discussed. DependenCies like lubricant material and composite, LPS-binder and composite, particle shape and PM-route with respect to achievable density. (temperature--) shock-reSistibility and corrosive-wear behavior will be described. The materials are characterized by particle size analysis (laser diffraction), scanning electron microscopy and X-ray diffraction. corrosive-wear behavior is determined using a special cylinder-in-bush apparatus (CIBA) as well as field-test in real production condition. Part I of this work describes the initial testing phase where different sample materials are produced, characterized, consolidated and tested in the CIBA under a common AI-Zn-system. The results are discussed and the material-system for the large components to be produced for the field test in real production condition is decided. Outlook: Part II of this work will describe the field test in a hot-dip-galvanizing/aluminizing plant of the mechanically alloyed bearing bushes under aluminum-rich liquid metal. Alter testing, the bushes will be characterized and obtained results with respect to wear. expected lifetime, surface roughness and infiltration will be discussed. Part III of this project will describe a second initial testing phase where the won results of part 1+11 will be transferred to the AI-Si system. Part IV of this project will describe the field test in a hot-dip-aluminizing plant of the mechanically alloyed bearing bushes under aluminum liquid metal. After testing. the bushes will be characterized and obtained results with respect to wear. expected lifetime, surface roughness and infiltration will be discussed.

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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.