• 제목/요약/키워드: interlayer expansion

검색결과 28건 처리시간 0.238초

SiC 휘스커강화 금속복합재료와 지르코니아 접합체의 잔류응력 해석에 관한 연구 (A Study on Residual Stress of SiC Whisker Reiforced AI Alloy/$ZrO_2$ Joints)

  • 주재황;박명균
    • 한국자동차공학회논문집
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    • 제4권6호
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    • pp.18-26
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    • 1996
  • A two dimensional thermo elasto-plastic finite element stress analysis was performed to study residual stress distributions in AI composites reinforced by SiC whisker and $ZrO_2$ ceramic joints. The influences on the residual stress distributions due to the difference of the reinforcement volume fraction and interlayer material property were investigated. Specifically, stress distributions between AI interlayer material property were investigated. Specifically, stress distributions between AI interlayer and $ZrO_2$ ceramic and between the AI interlayer and AI composite were computationally analzed.

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Ca-형 및 Na-형 벤토나이트의 제반 물성 및 유기양이온 흡착비교 (Comparison of Some Physicochemical Properties and Adsorption of Organic Cations between Ca- and Na-bentonites)

  • 고상모;김자영
    • 한국광물학회지
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    • 제15권4호
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    • pp.243-257
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    • 2002
  • Ca-형과 Na-형 벤토나이트는 물성의 차이로 인하여 그 용도를 달리하며, 국내에서는 Ca-형 벤토나이트만 산출되기 때문에 산업체에서는 Na-형으로 변환시켜 토목용이나 주물용으로 활용되고 있다. 이 연구는 Ca-형과 Na-형 벤토나이트의 몇 가지 물성을 비교하여 그 차별성을 명확히 밝히고자 한다. 또한 HDTMA(Hexadecyltrimethylammonium)나 CP(Cetylprydinium)와 같은 유기양이온을 Ca-형과 Na-형 벤토나이트에 치환시켜 유기 양이온과 벤토나이트와의 흡착 특성을 비교 하고자 시도되었다. Na-형 벤토나이트는 Ca-형 벤토나이트에 비해 강한 알카리성, 매우 높은 팽윤성과 점도를 나타내나, 양이온 교환능과 MB(Methylene Blue) 흡착양은 변화를 보이지 않는다. 탁도는 Na-형 벤토나이트가 높으며 시간의 변화에 따라서도 거의 변화가 초래되지 않았으나, Ca-형 벤토나이트는 단시간 내 급격하게 응집이 초래되었다. 열 분석 결과 큰 차이는 보이지 않으나 흡착수와 층간수의 분해는 Na-형 벤토나이트가 보다 저온에서 빨리 일어나며, 완전한 구조의 분해는 Ca-형 벤토나이트가 Na-형 벤토나이트보다 저온에서 용이하게 일어났다. HDTMA와 CP를 벤토나이트에 치환케 되면 대체적으로 강한 층간팽창이 초래되어 저면 간격이 40 $\AA$ 이상 늘어남으로써 공간을 제공하여 연속적인 흡착이 초래되었다. HDTMA의 흡착은 양이온 교환능의 200% 이상을 치환하였을 때 거의 포화상태에 달하여 저면 간격이 $37~38\AA$으로 팽창이 초래되었으나, CP의 흡착은 양이온 교환능의 140% 이상을 치환케 되면 저면 간격이 $40\AA$에 달하여 거의 포화되었다. 이는 CP가 HDTMA보다 용이하게 층간팽창을 초래시키고 흡착이 일어남을 의미한다. CP와 Ca-형 및 Na-형 벤토나이트와의 흡착거동은 L형의 흡착등온선을 나타내었으며, 매우 규칙적이고 일관성 있게 흡착이 일어남으로써 안정한 상태를 유지하였다. 또한 층간 교환성 양이온 종에 관계없이 유기양이온 흡착거동은 거의 동일하게 일어났다.

Si$_3$N$_4$/S. S316 접합에서 중간재가 접합강도 및 신회도에 미치는 영향 (Effect of Interlayer Materials on Bending Strength and Reliability of Si$_3$N$_4$/S. S316 Joint)

  • 윤호욱;박상환;최성민;임연수;정윤중
    • 한국세라믹학회지
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    • 제35권3호
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    • pp.219-230
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    • 1998
  • Various interlayer materials have been tested for active metal(Cusil ABA) brazing of Si3N4/S. S316 joint. In general multilayer joint had higher strength(80-150 MPa) and better reliability than monolayered one. The joint with Cu(0.2)/Mo(0.3)/Cu(0.2mm) interlayer showed the highest bending strength of abou 490 MPa and the joint with Cu(0.2)/Mo(0.3mm) interlayer the best reliability (14.6 Weibull modulus). The stresses distributed in joint materials during 4-point bending test were estimated by CAE von Mises analysis; the estimated stresses were In good agreement with the measured data. In multilayer joint Cu was though to reduce the residual stresses induced by the difference in thermal expansion coefficient between the ceramic Mo and metal It apperared that a Cu/Mo was optimum interlayer material for Si3N4/S. S316 joint with high bending strength (420 MPa) and reliability. In addition the various shapes and types of compound were examined by EPMA in joining interface.

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고분자-점토 나노복합체에 관한 계면활성제의 개질 영향 (Modified Effects or Surfactants with Polymer-Clay Nanocomposites)

  • 김홍운;방윤혁;최수명;임경희
    • 한국응용과학기술학회지
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    • 제23권4호
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    • pp.290-299
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    • 2006
  • This article investigated to polymer-clay nanocomposite, especially in interfacial respect clay structure, its dispersion into polymer matrix, and clay modification is studied. The cationic exchange of surfactants with clay gallery results in preparing organo-clay capable of compatiblizing to monomer or polymer and increasing interlayer adhesion energy due to expansion of interlayer spacing. The orientation of surfactant in clay gallery is affected by chemical structure and charge density of clay, and interlayer spacing and volume is increased with alkyl chain length of surfactant, or charge density of clay. Also, the interaction between clay and polymer in preparing polymer-clay nanocomposite is explained thermodynamically. In the future, the study and development of polymer-clay nanocomposite is paid attention to the interfacial adhesion, clay dispersion within polymer, mechanism of clay intercalation or exfoliation.

초경합금에 나노결정질 다이아몬드 코팅 시 금속 중간층의 효과 (Effect of Metal Interlayers on Nanocrystalline Diamond Coating over WC-Co Substrate)

  • 나봉권;강찬형
    • 한국표면공학회지
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    • 제46권2호
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    • pp.68-74
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    • 2013
  • For the coating of diamond films on WC-Co tools, a buffer interlayer is needed because Co catalyzes diamond into graphite. W and Ti were chosen as candidate interlayer materials to prevent the diffusion of Co during diamond deposition. W or Ti interlayer of $1{\mu}m$ thickness was deposited on WC-Co substrate under Ar in a DC magnetron sputter. After seeding treatment of the interlayer-deposited specimens in an ultrasonic bath containing nanometer diamond powders, $2{\mu}m$ thick nanocrystalline diamond (NCD) films were deposited at $600^{\circ}C$ over the metal layers in a 2.45 GHz microwave plasma CVD system. The cross-sectional morphology of films was observed by FESEM. X-ray diffraction and visual Raman spectroscopy were used to confirm the NCD crystal structure. Micro hardness was measured by nano-indenter. The coefficient of friction (COF) was measured by tribology test using ball on disk method. After tribology test, wear tracks were examined by optical microscope and alpha step profiler. Rockwell C indentation test was performed to characterize the adhesion between films and substrate. Ti and W were found good interlayer materials to act as Co diffusion barriers and diamond nucleation layers. The COFs on NCD films with W or Ti interlayer were measured as less than 0.1 whereas that on bare WC-Co was 0.6~1.0. However, W interlayer exhibited better results than Ti in terms of the adhesion to WC-Co substrate and to NCD film. This result is believed to be due to smaller difference in the coefficients of thermal expansion of the related films in the case of W interlayer than Ti one. By varying the thickness of W interlayer as 1, 2, and $4{\mu}m$ with a fixed $2{\mu}m$ thick NCD film, no difference in COF and wear behavior but a significant change in adhesion was observed. It was shown that the thicker the interlayer, the stronger the adhesion. It is suggested that thicker W interlayer is more effective in relieving the residual stress of NCD film during cooling after deposition and results in stronger adhesion.

c-axis Tunneling in Intercalated Bi$_2Sr_2CaCu_2O_{8+x}$ Single Crystals

  • Lee, Min-Hyea;Chang, Hyun-Sik;Doh, Yong-Joo;Lee, Hu-Jong;Lee, Woo;Choy, Jin-Ho
    • 한국초전도학회:학술대회논문집
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    • 한국초전도학회 1999년도 High Temperature Superconductivity Vol.IX
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    • pp.260-260
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    • 1999
  • We compared c-axis tunneling characteristics of small stacked intrinsic Josephson junctions prepared on the surface of pristine, I-, and HgI$_2$-intercalated Bi$_2Sr_2CaCu_2O_{8+x}$ (Bi2212) single crystals. The R(T) curves are almost metallic in I-Bi2212 specimens, but semiconducting in HgI$_2$-Bi2212 ones.· The transition temperatures were 82.0 K, 73.0 K, and 76.8 K for pristine Bi2212, I-Bi2212, and HgI2-Bi2212 specimens, respectively, consistent with p-T$_c$ phase diagram. Current-voltage (IV) characteristics of both kinds of specimens show multiple quasiparticle branches with well developed gap features, indicating Josephson coupling is established between neighboring CuO$_2$ planes. The critical current I$_c$ of I-Bi2212 is almost the same as of that of pristine crystals, but I$_c$ is much reduced in Hgl$_2$-Bi2212. In spite of expanded interlayer distances, the interlayer coupling is not significantly affected in I-Bi2212due to holes generated by iodine atoms. The coupling in HgI$_2$-Bi2212 is, however, weakened due to inertness of HgI$_2$ molecules and the expansion of interlayer distance. Relation between the superconducting transition temperature T$_c$ and the critical current I$_c$ seems to contradict Anderson's interlayer-pair-tunneling theory but agree with a modified version of it.

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Effects of Strain Rate and Temperature on Fracture Strength of Ceramic/Metal Joint Brazed with Ti-Ag-Cu Alloy

  • Seo, Do-Won;Lim, Jae-Kyoo
    • Journal of Mechanical Science and Technology
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    • 제16권9호
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    • pp.1078-1083
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    • 2002
  • Ceramics are significantly used in many industrial applications due to their excellent mechanical and thermal properties such as high temperature strength, low density, high hardness, low thermal expansion, and good corrosion resistive properties, while their disadvantages are brittleness, poor formability and high manufacturing cost. To combine advantages of ceramics with those of metals, they are often used together as one composite component, which necessiates reliable joining methods between metal and ceramic. Direct brazing using an active filler metal has been found to be a reliable and simple technique, producing strong and reliable joints. In this study, the fracture characteristics of Si$_3$N$_4$ ceramic joined to ANSI 304L stainless steel with a Ti-Ag-Cu filler and a Cu (0.25-0.3 mm) interlayer are investigated as a function of strain rate and temperature. In order to evaluate a local strain a couple of strain gages are pasted at the ceramic and metal sides near joint interface. As a result the 4-point bending strength and the deflection of interlayer increased at room temperature with increasing strain rate. However bending strength decreased with temperature while deflection of interlayer was almost same. The fracture shapes were classified into three groups ; cracks grow into the metal-brazing filler line, the ceramic-brazing filler line or the ceramic inside.

강도 및 건조수축 저감을 통한 CLC의 안정성 평가 (Evaluation of Stability of CLC through Strength and Reduction of Drying Shrinkage)

  • 이창우;황우준;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 가을 학술논문 발표대회
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    • pp.205-206
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    • 2022
  • This study intends to conduct tests on subsidence and drying shrinkage by mixing CaO-CSA expansion materials to ensure the stability of CLC, and to understand its properties. Based on CLC of 0.6, the replacement ratio of CaO-CSA expansion material was conducted at five levels compared to blast furnace slag, and the results are as follows. The replacement of CaO-CSA expansion material at an appropriate level produces ethringhite and potassium hydroxide, and it is believed that the internal voids of CLC and the Tobelmorite interlayer structure are charged to increase the structural stability, leading to an increase in compressive strength and a decrease in the drying shrinkage. However, it is judged that tissue relaxation due to excessive substances in the high replacement ratio affects the stability of CLC. In the future, we will conduct additional experiments on density, absorption rate, flow test, and settlement, and evaluate and analyze the stability of CLC by selecting the optimal replacement ratio of CaO-CSA expansion materials.

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Characteristics of Exfoliated Graphite Prepared by Intercalation of Gaseous SO3into Graphite

  • Lee, Beom-Jae
    • Bulletin of the Korean Chemical Society
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    • 제23권12호
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    • pp.1801-1805
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    • 2002
  • The graphite intercalation compounds(GIC) were prepared by a dry process that led to the intercalation from the direct reaction of gaseous $SO_3$ with flake type graphite. The basal spacing of the GIC was increased from 8.3 ${\AA}$ to 12 in the gallery height. The ejection of interlayer $SO_3$ molecules by the heating for 1 minute at $950^{\circ}C$ resulted in an exfoliated graphite (EG) with surprisingly high expansion in the direction of c-axis. The expansion ratios of the exfoliated graphites were increased greatly between 220 times and 400 times compared to the original graphite particles, and the bulk density was range of 0.0053 to 0.01 $g/cm^3$, depending on reaction time. The pore size distribution of exfoliated graphite was in the range of $10-170{\mu}m$, which exhibites both mesoporosity and macroporosities. This result indicates that the direct reaction of graphite paricles with gaseous $SO_3$ can be proposed as an another route for the exfoliated graphite having excellent physical properties.

벤토나이트로부터 합성한 Al-층간가교점토의 특성과 인산이온의 흡착성 (Characteristics of Al-Pillared Clay Synthesized from Bentonite and the Adsorption Properties for Phosphate Ion)

  • 황진연;김나영;이효민
    • 한국광물학회지
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    • 제15권4호
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    • pp.315-327
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    • 2002
  • 벤토나이트에 포함된 몬모릴로나이트의 층간에 Al산화물의 기둥(pillar)을 만든 Al-층간가교 점토를 합성하였다. 이 Al-층간가교점토에 대해 XRD, DTA, 화학분석 등을 실시하여 광물학적 특성을 검토하였으며, 그리고 이 가교점토에 대하여 Batch법의 흡착실험을 통하여 인산이온의 흡착성을 검토하였다. X-선 회절분석의 결과, Al-층간가교점토는 상온에서 층간격이 $18.03 \AA$으로 증가되어 나타났고, $550\AA$가열에서도 약 $17\AA$을 나타내어 열적 안정성이 크며, 글리세롤에 의한 층간격의 팽윤은 매우 미약한 것으로 나타났다. 열분석 결과, 이 점토에는 pillar부분에 관련된 물의 탈수에 의한 것으로 보이는 $270^{\circ}C$$420^{\circ}C$의 특징적인 흡열반응이 나타났다. Al-층간가교 점토의 인산 이온에 대한 흡착실험의 결과, 몬모릴로나이트는 거의 흡착능력을 보이지 않는데 비하여 월등히 우수한 인산이온($PO_{4}^{3-}$ /)성을 나타냈다. 시료 2 g에 용액 20 mL의 실험에서 300 mg/L 이하의 인산 농도에서는 거의 100%의 흡착효율을 나타냈다. 그리고 인산 이온에 흡착된 시료를 $500^{\circ}C$로 가열한 후 재차 흡착실험을 행한 결과, 역시 매우 높은 흡착효율을 나타냈다. 따라서 Al-층간가교 점토의 인산 이온 흡착에 대한 재활용의 가능성이 큰 것으로 나타났다