• Title/Summary/Keyword: Powder pressing

검색결과 389건 처리시간 0.029초

탄화규소 휘스커 첨가가 탄화규소의 미세구조와 기계적 특성에 미치는 영향 (Effect of SiC whisker addition on microstructure and mechanical properties of silicon carbide)

  • Young-Wook Kim;Kyeong-Sik Cho;Heon-Jin Choi
    • 한국결정성장학회지
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    • 제7권3호
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    • pp.473-480
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    • 1997
  • 소결조제로 $Al^2O^3$$Y^2O^3$를 첨가한 $\beta$-SiC 분말에 seed로서 1 wt% 및 wt%$\beta$-SiC 휘스커를 첨가한 시편과 첨가하지 않은 시편을 $1850^{\circ}C$ 에서 5-10 시간 동안 열처리를 행하였다. Seed로서 1-3 wt% $\beta$-SiC 휘스커의 첨가는 액상소결 탄화규소의 미세구조와 기계적특성에 의미 있는 영향을 미치지 않았다. 이는 $\beta$-SiC 휘스커가 액상이 존재하는 고온가압소결 조건에서 불안정하기 떼문이라고 생각된다. $\beta$-SiC 휘스커를 1 wt% 첨가하여 $1950^{\circ}C$에서 5시간 동안 열처리한 시편의 강도 및 파괴인성은 각각 465 MPa 및 5.8 MPa $m^{1/2}$이었고, 동일조건에서 제조된 $\beta$-SiC 휘스커를 펌가하지 않은 시편의 강도 및 피괴인성은 각각 451 MPa 및 5.5 MPa $m^{1/2}$이었다.

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반응소결된 Si3N4-SiO2-BN 복합체의 기계적 강도 및 유전물성에 관한 연구 (Flexural Strength and Dielectric Properties of in-situ Si3N4-SiO2-BN Composite Ceramics)

  • 이현민;이승준;백승수;김도경
    • 한국세라믹학회지
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    • 제51권5호
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    • pp.386-391
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    • 2014
  • Silicon nitride ($Si_3N_4$) is regarded as one of the most promising materials for high temperature structural applications due to its excellent mechanical properties at both room and elevated temperatures. However, one high-temperature $Si_3N_4$ material intended for use in radomes has a relatively high dielectric constant of 7.9 - 8.2 at 8 - 10 GHz. In order to reduce the dielectric constant of the $Si_3N_4$, an in-situ reaction process was used to fabricate $Si_3N_4-SiO_2$-BN composites. In the present study, an in-situ reaction between $B_2O_3$ and $Si_3N_4$, with or without addition of BN in the starting powder mixture, was used to form the composite. The in-situ reaction process resulted in the uniform distribution of the constituents making up the composite ceramic, and resulted in good flexural strength and dielectric constant. The composite was produced by pressure-less sintering and hot-pressing at $1650^{\circ}C$ in a nitrogen atmosphere. Microstructure, flexural strength, and dielectric properties of the composites were evaluated with respect to their compositions and sintering processes. The highest flexural strength (193 MPa) and lowest dielectric constant (5.4) was obtained for the hot-pressed composites. The strength of these $Si_3N_4-SiO_2$-BN composites decreased with increasing BN content.

LPS - SiC 세라믹스의 굽힘강도 특성에 미치는 미시조직 영향 (Microstructure Effects on Bending Strength Characteristics of LPS - SiC Ceramic)

  • 윤한기;정헌채
    • 한국해양공학회지
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    • 제20권5호
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    • pp.77-81
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    • 2006
  • In this study, monolithic liquid phase sintered SiC (LPS-SiC) was made by the hot pressing method with nano-SiC powder, whose particle size is 30 nm and less on the average. Alumina ($Al_{2}O_{3}$), yttria ($Y_{2}O_{3}$), and silica ($S_{i}O_{2}$) were used for sintering additives. To investigate the effects of $S_{i}O_{2}$, the $Al_{2}O_{3}/Y_{2}O_{3}$ composition was fixed and the ratio of $S_{i}O_{2}$ was changed, with seven different ratios tested. And to investigate the effects of the sintering temperature, the sintering temperature was changed, with $1760^{\circ}C,\;1780_{\circ}C$, and $1800_{\circ}C$ being used with a $S_{i}O_{2}$ ratio of 3 wt%. The materials were sintered for 1 hour at $1760^{\circ}C,\;1780^{\circ}C$ and $1800^{\circ}C$ under a pressure of 20 MPa. The effects on sintering from the sintering system used, as well as from the composition of the sintering additives, were investigated by density measurements. Mechanical properties, such as flexural strength, were investigated to ensure the optimum conditions for a matrix of SiCf/SiC composites. Sintered densityand the flexural strength of fabricated LPS-SiC increased with an increase in sintering temperature. Particularly, the relative density of a sintered body at $1800^{\circ}C$ with a non-content of $S_{i}O_{2}$, a specimen of AYSO-1800, was 95%. Also, flexural strength was about 750MPa.

$Nb/MoSi_2-ZrO_2$ 적층복합재료의 제조 및 충격특성 (Fabrication and Impact Properties of $Nb/MoSi_2-ZrO_2$ Laminate Composites)

  • 이상필;윤한기;공유식
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2002년도 춘계학술대회 논문집
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    • pp.29-34
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    • 2002
  • [ $Nb/MoSi_2-ZrO_2$ ] laminate composites have been successfully fabricated by alternately stacking $MoSi_2-ZrO_2$ powder layer and Nb sheet, followed by hot pressing in a graphite mould. The fabricating parameters were selected as hot press temperatures. The instrumented Charpy impact test was carried out at the room temperature in order to investigate the relationship between impact properties and fabricating temperatures. The interfacial shear strength between $MoSi_2-ZrO_2$ and Nb, which is associated with the fabricating temperature and the growth of interfacial reaction layer, is also discussed. The plastic deformation of Nb sheet and the interfacial delamination were macroscopically observed. The $Nb/MoSi_2-ZrO_2$ laminate composites had the maximum impact value when fabricated at 1623K, accompanying the increase of fracture displacement and crack propagation energy. The interfacial shear strength of $Nb/MoSi_2-ZrO_2$ laminate composites increased with the growth of interfacial reaction layer, which resulted from the increase of fabricating temperature. there is an appropriate interfacial shear strength for the enhancement of impact value of $Nb/MoSi_2-ZrO_2$ laminate composites. A large increase of interfacial shear strength restrains the plastic deformation of Nb sheet.

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SiC 재료의 미세조직 및 열충격 특성 (Microstructure and Thermal Shock Properties of SiC Materials)

  • 이상필;조경서;이현욱;손인수;이진경
    • 한국해양공학회지
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    • 제25권3호
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    • pp.28-33
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    • 2011
  • The thermal shock properties of SiC materials were investigated for high temperature applications. In particular, the effect of thermal shock temperature on the flexural strength of SiC materials was evaluated, in conjunction with a detailed analysis of their microstructures. The efficiency of a nondestructive technique using ultrasonic waves was also examined for the characterization of SiC materials suffering from a cyclic thermal shock history. SiC materials were fabricated by a liquid phase sintering process (LPS) associated with hot pressing, using a commercial submicron SiC powder. In the materials, a complex mixture of $Al_2O_3$ and $Y_2O_3$ powders was used as a sintering additive for the densification of the microstructure. Both the microstructure and mechanical properties of the sintered SiC materials were investigated using SEM, XRD, and a three point bending test. The SiC materials had a high density of about 3.12 Mg/m3 and an excellent flexural strength of about 700 MPa, accompanying the creation of a secondary phase in the microstructure. The SiC materials exhibited a rapid propagation of cracks with an increase in the thermal shock temperature. The flexural strength of the SiC materials was greatly decreased at thermal shock temperatures higher than $700^{\circ}C$, due to the creation of microcracks and their propagation. In addition, the SiC materials had a clear tendency for a variation in the attenuation coefficient in ultrasonic waves with an increase in thermal shock cycles.

Al-Ni-Y 합금 비정질 리본의 열적 특성 및 리본 압출재의 고온변형 특성 (Thermal Properties of Al-Ni-Y Alloy Amorphous Ribbons and High Temperature Deformation Behavior of Al-Ni-Y Alloy Extrudates Fabricated with Amorphous Ribbons)

  • 고병철;유연철
    • 소성∙가공
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    • 제7권4호
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    • pp.333-339
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    • 1998
  • Hot torsion tests were conducted to investigate the high temperature deformation behavior of $Al_{85}Ni_{10}Y_5$ alloy extrudates fabricated with amorphous ribbons. The powder metallurgy routes, hot pressing and hot extrusion were used to fabricate the extrudates. Thermal properties of amorphous ribbons with different thickness as a function of aging temperature were studied by thin film x-ray dif-fraction (XRD) and differential scanning calorimetry(DSC). The Al phase crystallite firstly formed in the amorphous ribbons and its crystallization temperature($T_x$)Was ~210${\circ}C$ During the processings of consolidation and extrusion, nano-grained structure(~100 nm) was formed in the Al85Ni10Y5 alloy extrudates. The as-extrudated Al85Ni10Y5 alloy and the $Al_{85}Ni_{10}Y_5$ alloy annealed at 250${\circ}C$ for 1 hour showed a flow curve of DRV(dynamic recovery) during hot deformation at 400-550${\circ}C$. On the other hand, the $Al_{85}Ni_{10}Y_5$ alloy annealed at 400${\circ}C$ for 1 hour showed a flow curve of DRX(dynamic recrys-tallization) during hot deformation at 450-500${\circ}C$. Also the flow stress and flow strain of the $Al_{85}Ni_{10}Y_5$ alloy extrudate annealed at 400${\circ}C$ were higher than those at 250${\circ}C$.

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Effects of core characters and veneering technique on biaxial flexural strength in porcelain fused to metal and porcelain veneered zirconia

  • Oh, Ju-Won;Song, Kwang-Yeob;Ahn, Seung-Geun;Park, Ju-Mi;Lee, Min-Ho;Seo, Jae-Min
    • The Journal of Advanced Prosthodontics
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    • 제7권5호
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    • pp.349-357
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    • 2015
  • PURPOSE. The purpose of this study was to assess the impact of the core materials, thickness and fabrication methods of veneering porcelain on prosthesis fracture in the porcelain fused to metal and the porcelain veneered zirconia. MATERIALS AND METHODS. Forty nickel-chrome alloy cores and 40 zirconia cores were made. Half of each core group was 0.5 mm-in thickness and the other half was 1.0 mm-in thickness. Thus, there were four groups with 20 cores/group. Each group was divided into two subgroups with two different veneering methods (conventional powder/liquid layering technique and the heat-pressing technique). Tensile strength was measured using the biaxial flexural strength test based on the ISO standard 6872:2008 and Weibull analysis was conducted. Factors influencing fracture strength were analyzed through three-way ANOVA (${\alpha}{\leq}.05$) and the influence of core thickness and veneering method in each core materials was assessed using two-way ANOVA (${\alpha}{\leq}.05$). RESULTS. The biaxial flexural strength test showed that the fabrication method of veneering porcelain has the largest impact on the fracture strength followed by the core thickness and the core material. In the metal groups, both the core thickness and the fabrication method of the veneering porcelain significantly influenced on the fracture strength, while only the fabrication method affected the fracture strength in the zirconia groups. CONCLUSION. The fabrication method is more influential to the strength of a prosthesis compared to the core character determined by material and thickness of the core.

LPS-SiC 세라믹스의 제조특성에 미치는 $SiQ_2$ 입자크기의 영향 (Effects of $SiO_2$ Particle-size on Fabrication Properties of LPS-SiC Ceramics)

  • 김성훈;윤한기;김부안
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2006년 창립20주년기념 정기학술대회 및 국제워크샵
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    • pp.162-165
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    • 2006
  • In this study, Liquid Phase Sintered SiC (LPS-SiC) was fabricated by hot pressing method with $\beta$-SiC powder whose a particle size is 30nm and less on the average in argon condition at 1780 and $1800^{\circ}C$ under 20MPa. Alumina ($Al_2O_3$), yttria ($Y_2O_3$) and silica ($SiO_2$) were used for sintering additives. To investigate effects of particle-size and temperature on $SiO_2$, LPS-SiC was fixed $Al_2O_3$, $Y_2O_3$ and then particle-size of $SiO_2$ were changed as two kinds. The system of particle-size and temperature on sintering additives which affects a property of sintering os well os the influence depending on particle-size and temperature of sintering additives were investigated by measurement of sintering properties. Such as measurement of sintering density, vikers hardness and observing of microstructure were investigated to make sure of the optimum condition which is about matrix of $SiC_f/SiC$ composites. Base on the composition of sintering additives, microstructure and sintering property correlation, the effect of particle-size of sintering additives are discussed. An experimental method to investigate the dynamic characteristics of bums in extreme environmental condition is established.

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상압소결 $Al_2O_3-SiC$계 소결체의 기계적 성질 (I) : SiC분말의 분산효과 (Mechanical Properties of the Pressureless Sintered $Al_2O_3-SiC$ Composite(1) : Dispersion Effects of SiC Powder)

  • 이홍림;김경수;이형복
    • 한국세라믹학회지
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    • 제25권3호
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    • pp.231-236
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    • 1988
  • $Al_2O_3$ 기지에 미치는 2차상의 영향을 알아보기 위하여 SiC 입자를 5~20vol.% 분산시키고 소결조제로서 $TiO_2$ 또는 RY_2O_3$를 2.5wt.%첨가하여 180$0^{\circ}C$, $N_2$분위기 중에서 90분간 상압소결 하였다. SiC함량이 증가함에 따라 소결체의 밀도는 감소하였지만 기계적 물성은 증가하여 $Y_2O_3$를 소결조제로 첨가한 경우, 꺾임강도는 525MPa, 경도는 17.1GPa,파괴인성은 4.1 MPa.$m^{1/2}$ 정도의 최고값을 나타내었고 반면 $TiO_2$를 소결조제로 첨가한 경우 꺾임강도 285MPa , 경도 12.1GPa 정도의 값을 나타냈다. 그리고 이와 같은 기계적 물성의 증진은 주로 SiC의 복합화에 따른 균열의 편향과 $Al_2O_3$ 의 입자성장억제효과에 의한 것으로 밝혀졌다.

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알칼리계 무연 압전 세라믹과 에폭시 복합소재의 유전 및 압전 특성 (Dielectric and Piezoelectric Properties of Alkaline Lead-free Piezoceramic-epoxy Composites)

  • 윤창호;러득탕;허대준;안경관;이재신
    • 한국전기전자재료학회논문지
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    • 제25권6호
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    • pp.420-425
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    • 2012
  • Lead-free piezoelectric ceramic/epoxy composites with '0-3' connectivity were prepared by cold-pressing with a temperature controlled curing method. A ceramic powder with a composition of $(Na_{0.51}K_{0.47}Li_{0.02})(Nb_{0.8}Ta_{0.2})O_3$ was synthesized by a conventional solid state reaction route. The dielectric and piezoelectric properties of ceramic/epoxy composites were characterized as a function of the volume fraction (${\phi}$) of piezoelectric ceramics, which was varied from 70 to 95 vol%. The results indicated that the piezoelectric properties of composites were significantly affected by the volume fraction of ceramics. In terms of the piezoelectric properties, specimens showed the best performance at ${\phi}$= 85 vol%, resulting in the piezoelectric constant $d_{33}$ of 39 pC/N and the figure of merit as a piezoelectric energy harvester ($d_{33}{\cdot}g_{33}$) of 1.24 $pm^2/N$.