• Title/Summary/Keyword: 층간온도

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Mineralogical Characteristics of Tosudites from the Sungsan and Bubsoo Mines, Korea (성산광산과 법수광산에서 산출되는 토수다이트의 광물학적 특성)

  • Cho, Hyen-Goo;Kim, Won-Sa
    • Journal of the Mineralogical Society of Korea
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    • v.6 no.1
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    • pp.17-26
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    • 1993
  • Mineralogical characteristics of tosudite from the Sungsan and Bubson mines were studied and correlated using X-ray diffraction analysis, chemical analysis and electron microscopy. Tosudite occurs as an alteration product of Cretaceous volcanoclastic rocks in both mines. It is associated with microcrystalline quartz, dickite, illite/smectite or mica/smectite mixed-layer mineral. It forms cryptocrystalline aggregates with flaky habit. XRD analysis suggests that tosudite is an 1:1regularly interstratified dioctahedral smetite/dioctahedral chlorite. Bubsoo tosudite has more(00ℓ ) reflections and more periodice stacking sequence than Syngsan tosudite. Chemical analysis shows that tosudite is a Li-bearing aluminous 1:1 regularly interstrattified mineral composed of K-bedellite and donbassite. Cookeite component may be present in the chlorite layer. Bubsoo tosudite is more Al in tetrahedral site and Ca in interlayer, but less Al in octahedral site than Sugsan tosudite. Tosudite may be formed as the intermediate alteration products, forming after muscovite and before illite/smectite or mica/s$^{\circ}C$mectite, with the range from 100 $^{\circ}C$ to 360 ~ 480 $^{\circ}C$. The hydrothermal solution forming tosudite may be acidic solution with high activities of Si and Al.

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Thermal Bridge and Heat Transfer Analysis for Each Part in Residential Building According to Construction of Wood-based Finishing Material (목질 마감재 구성에 따른 주거용 건축물 부위별 열교 및 전열성능 분석)

  • Seo, Jungki;Jeong, Su-Gwang;Kim, Sumin
    • Journal of the Korean Wood Science and Technology
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    • v.45 no.3
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    • pp.343-359
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    • 2017
  • Many researches and policies have been carried out for saving energy in buildings. However, there are a few studies of thermal characteristics of wood-based materials that have been widely used as structural materials and finishing materials in buildings. In this study, thermal bridging areas were found to investigate thermal performance of residential building using non wood-based materials and wood-based materials. And heat transfer analysis of 16 case studies according to composition of structural materials and finishing materials was conducted. Also in this experiment, Physibel Trisco was used as the heat transfer analysis simulation tool, which conforms to the calculation method of ISO 10211. Analytical modeling was also carried out according to the ISO 10211, and the boundary temperature conditions were set at room temperature $20^{\circ}C$ and outdoor temperature $-11.3^{\circ}C$ (Seoul standard) according to the energy saving design standard in South Korea. Applied structures are classified according to the cases of concrete structure with non wood-based finishing materials, concrete structure with wood-based finishing materials and wood structure. Analyzed building elements were divided into a wall, a roof, an interlayer floor and a bottom floor. As a result, it can be confirmed that the thermal bridge of the concrete structure and wood structure were caused by the geometrical and material causes. In addition, the structural thermal bridge was caused in the discontinuity of the insulation in the concrete structure. Also it was confirmed that the linear heat transfer coefficient of the wall decreases when the wood-based materials are applied to the concrete structure.

The Study of Low Carbon Microalloyed Forging Steels by Direct Quenching Method with Mo Additions (몰리브덴을 첨가한 직접 소입 저탄소 비조질강에 관한 연구)

  • Wee, Kyoum-Bok;Lee, Kyung-Sub
    • Korean Journal of Materials Research
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    • v.2 no.6
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    • pp.452-460
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    • 1992
  • Effects of the microalloyed elements, temperatures and cooling rates on the strength and toughness of the medium carbon microalloyed hot forging steels obtained by air cooling(A.C.) method and the low carbon microalloyed forging steels by direct quenching(D.Q.) method were investigated. Combined additions of V+Nb produced the optimum combination of strength and toughness with ferrite-pearlite structure of the medium carbon steel by the A.C. method. 831MPa in UTS and 52.1J in toughness were obtained for 0.40c+0.12V+0.07Nb. It was martensite structure for the low carbon steel by the D.Q. method. The highest UTS and toughness obtained by Mo additions were 855MPa and 108j by 0.12C+0.10V+0.03Nb+1.13Mo respectively. Especially, the toughness of the low carbon steel was twice better than that of the medium carbon steel. 110$0^{\circ}C$was more appropriate than 120$0^{\circ}C$ for the reheating and forging temperature and 1.$2^{\circ}C$ /s was the best cooling rate from the viewpoint of the strength and toughness. Multiple regression analysis was used to quantify the influence of the microalloyed elements, temperatures and cooling rates on the strength, toughness, austenite grain size, and the pearlite interlamellar spacing.

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Comparison of Mechanical and Interfacial Properties of Carbon Fiber Reinforced Recycled PET Composites with Thermoforming Temperature and Time (열 성형 온도 및 시간에 따른 탄소섬유 강화 재활용 PET 복합재료의 계면 및 기계적 물성 비교)

  • Baek, Yeong-Min;Shin, Pyeong-Su;Kim, Jong-Hyun;Park, Ha-Seung;Kwon, Dong-Jun;Park, Joung-Man
    • Composites Research
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    • v.30 no.3
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    • pp.175-180
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    • 2017
  • Currently, since carbon fiber reinforced plastics (CFRPs) are lightweight and have excellent physical properties, their demand has increased dramatically. Many works have studied the CFRPs based on recycled thermoplastics. In this study, the applicability of recycled composite was evaluated using recycled polyethylene terephthalate (PET). PET was collected from waste materials used in beverage bottles and processed to produce PET films. Optimal thermoforming temperature and time were analyzed by comparing the mechanical properties with forming temperature and time difference for producing PET films. CF mat and PET film were used to determine the suitable parameters for the optimum thermoforming of CF/PET composites. The mechanical properties of each thermoforming condition were verified by bending test. The degree of impregnation of the PET film into the CF mat was evaluated by cross-sectional photographs, whereas the interfacial properties were evaluated by interlaminar shear strength (ILSS). Ultimately, it was confirmed that the thermoforming condition for forming the CF/recycled PET composites yielding the optimal mechanical and interfacial properties was at $270^{\circ}C$ for 5 minutes.

The study on the variaty of anode materials, $C_6Li$ for secondary battery (2차 전지 음극 재료용 $C_6Li$의 다양화에 관한 연구)

  • 오원춘;김범수;이영훈;고영신
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.8 no.4
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    • pp.660-666
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    • 1998
  • We discussed structure, energy state, characteristics of thermal stability, and electrochemical properties of Li-GFICs, Li-PCICs, and Li-AGICs during the intercalation process. According to X-ray diffraction patterns, we observed phase of stage 2 mainly from Li-GFICs, while stage 1 phase as well as stage 2 from Li-PCICs. For the structure of Li-AGICs, stage 1 phase was dominant, but it was not possible to obtain pure stage 1 compound probably due to structural characteristics of artificial graphite. We measured energy state of the compounds to stage stability, and revealed that Li-AGICs and Li-GFICs were in more stable state than Li-PCICs. Therefore, those two compounds could be excellent candidate for energy reserve material. From the study of thermal degradation, Li-GFICs showed strong exothermic reaction at around 300 and $400^{\circ}C$. In the study of thermal stability of Li-AGIC at various temperatures, we observed that lithium was not completely deintercalated and high stage was maintained even at high temperature. In the case of charge, discharge, and electrochemical studies, Li-GFICs showed the best results.

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Synthesis, photoluminescence and thermal properties of laponite-X (X = Eu, Tb) phosphors (라포나이트-X(X = Eu, Tb) 형광체의 합성 및 열적 안정성과 발광특성 연구)

  • Kim, Pyo-Ra;Son, Dong-Min;Lee, Han-Na;Kim, You-Hyuk
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.19 no.4
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    • pp.196-201
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    • 2009
  • In order to give emission functionality for laponite the laponite-X (x = Eu, Tb) phosphors were prepared by calcination of cryogels which were prepared through Na ion exchange reaction with Eu and Tb ions. Thermal stability and emission properties of new laponite-X (X = Eu, Tb) phosphors were investigated by X-ray diffractormeter and UV/VUV spectrofluorometer. The phosphors were stable around up to $600^{\circ}C$ and new crystalline phases were observed at $700^{\circ}C$. Red and green emissions of phosphors under UV/VUV excitation were also identified at $300^{\circ}C$ and $500^{\circ}C$ as emission peaks of $Eu^{3+}$ and $Tb^{3+}$, respectively.

Design and Analysis on Composite Structure for Aircraft Certification (항공기 인증을 위한 복합재 구조물 설계/해석)

  • Kim, Sung-Joon;Choi, Ik-Hyeon;Ahn, Seok-Min;Yeom, Chan-Hong
    • Aerospace Engineering and Technology
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    • v.8 no.1
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    • pp.42-48
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    • 2009
  • There are a number of factors affecting the continued airworthiness of composite structure. Unlike metal structure, damages made in manufacturing processes or maintenance repair procedures need to be considered. The different levels of degradation and damage, which may occur, must be considered for structural substantiation of static strength, stiffness, flutter, and damage tolerance. This can start with an evaluation of environmental effects for the particular composite material. Matrix-dominated composite properties, such as compressive strength, are most sensitive to moisture absorption and temperatures. Static strength substantiation includes the smaller damages that will not be detected in production or maintenance inspection while damage tolerance addresses larger damages that need to be repaired once discovered. In this paper, we intend to list the airworthiness regulations and advisory circular that are deemed closely related to the certification of composite airplanes.

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A New Preparation Method of Nafion/Mordenite Composite Membrane for Polymer Electrolyte Membrane Fuel Cell above 100℃ Operation (100℃ 이상에서 작동하는 고분자 전해질형 연료전지용 나피온/Mordenite 복합체 막의 새로운 제조 방법)

  • 곽상희;양태현;김창수;윤기현
    • Journal of the Korean Ceramic Society
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    • v.40 no.2
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    • pp.159-166
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    • 2003
  • The preparation method for composite membranes of high temperature operation above $100^{\circ}C$ for Polymer Electrolyte Membrane Fuel Cells (PEMFCs ) was presented, using perfluorosulfonylfluoride Nafion resin and mordenite, in addition to the physical properties, proton conductivity and single cells performance for it. The composite membranes were fabricated via melting of Nafion resin with various mordenite content. As the increase of mordenite content, at high temperature range, proton conductivity of the composite membrane increased due to the late dehydration rate of existent water in the mordenite. Also, from the result of the current-voltage relationship for single cells under $130^{\circ}C$ operation condition, the composite membrane cell with l0 wt% mordenite content showed better performance than that of the others over the entire current density range. This result indicated that the existent water in the composite membrane with l0 wt% mordenite content was higher than that with the others, thereby maintains its conductivity. Based upon the results of experiments, therefore, a Nafion/mordenite composite membrane prepared by this work is thought to be a satisfactory polymer electrolyte membrane for PEMFC operation above $100^{\circ}C$.

Constrained Sintering법에 의한 $Al_2O_3$/LTCC/$Al_2O_3$ 무수축 기판의 수축율 제어

  • Jo, Jeong-Hwan;Yeo, Dong-Hun;Sin, Hyo-Sun;Hong, Yeon-U;Kim, Jong-Hui;Nam, San
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.11a
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    • pp.39-39
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    • 2008
  • 이동통신 시스템의 소형화, 다기능화 추세에 따라 이동통신 부품들의 모듈화, 고집적화 추세로 급진전되고 있어, 고집적 세라믹 기판 모듈 제작을 위한 핵심공정 기술인 그린시트의 층간 정밀도 및 소성후 수축율 제어의 중요성이 증대되고 있다. 본 연구에서는 일축가압 이용한 PAS(Pressure Assisted Sintering) 법과 Al2O3를 희생층으로 이용한 Constrained Sintering법을 혼합하여 저온 동시소성 세라믹 기판의 x-y 축 수축율을 zero로 제어하고자하였다. $Al_2O_3$/LTCC/$Al_2O_3$인 샌드위치 구조로 세라믹 시트를 적층하여 Load 값과, LTCC 두께에 따른 x-y축, z축 소성 수축율 및 Edge Curvature의 Radius와 warpage 현상을 관찰하고, 이때 미세구조 및 밀도를 측정하였다. 그 결과 symmetic한 구조일 때 소성온도 $900^{\circ}C$에서 $Al_2O_3$ 두께가 $30{\mu}m$ 이상일 때 LTCC의 글라스가 $Al_2O_3$에 Infiltration 되는 두께는 $30{\mu}m$를 나타내었다. 또한 $Al_2O_3$ 두께 $500{\mu}m$, LTCC 두께 $2,000{\mu}m$, Load값이 800g/$cm^2$ 일 때 x-y 축 수축율<1%, z축 수축율 40%, 소결밀도는 2.99g/$cm^3$로 우수한 무수축 기판 특성을 나타내었다.

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사이클 화학 기상 증착 시스템에 의해 제조된 다층 무기 박막의 유기 발광 다이오드 박막 봉지

  • Lee, Jun-Hyeok;Min, Seok-Gi;Han, Yeong-Gi;An, Jae-Seok;Choe, Beom-Ho
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.397.2-397.2
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    • 2014
  • 유기 발광 다이오드 (OLED)의 상용화를 위해 해결해야할 기술적 문제 중하나는 장수명이다. OLED에 적용된 유기물 층은 수분과 산소에 취약하여 소자 수명을 단축하는 요소로 작용하는데, 이를 해결하기 위해 유기물을 보호하며, 유기물 내로 침투되는 수분과 산소를 제어하기 위한 보호 층의 증착이 필수적이다. 필수적이다. 본 연구에서는, 사이클 화학 기상 증착법(C-CVD)을 이용하여 SiN/SiCN/SiN 구조의 무기 박막을 증착하여 유기물 보호층으로서의 적용 가능성을 제시하고자 한다. 이 때 각층의 두께는 각 각 10 nm이다. 증착된 다층 무기 박막은 비정질 상으로 수분 침투 보호막으로서 적당하다. 다층 무기 박막의 수분에 대한 저항성은 칼슘을 이용한 투과도 변화를 이용하여 측정하였다. 칼슘을 이용한 투과도 측정을 위해 고분자 PEN 필름위에 칼슘을 60nm 두께로 증착 시키고, 이어서 무기물인 SiN/SiCN/SiN의 다층 박막을 확산 방지층으로 증착 하였다. 제작된 소자는 온도 $85^{\circ}C$, 상대습도 85%의 가혹 조건에서 시간에 따른 표면 변화 및 투과도의 변화를 측정하였다. SiN/SiCN/SiN 구조를 갖는 무기 박막 층의 투습도는 3000시간까지는 $3.2{\times}10-5g/m/day$를 유지하였다. 이는 OLED 소자의 상용화를 위한 요구 조건에 근접한 값이다. 그러나 투습도는 측정 시간이 6000시간이 지난 후에 급격 증가하는데 이것은 30nm 두께의 SiN/SiCN/SiN의 확산 방지층에 임계 수명이 존재 한다는 것을 의미 한다고 할 수 있다. C-CVD 기술에 의해 제조된 다층 무기 박막 보호 층의 경계면에서 각 층간의 intermixing 현상이 관측되었으며, 이는 무기물 층의 결함과 핀 홀을 통해 내부로 확산 되는 수분의 침투 경로를 효과적으로 제어할 수 있는 방법이다. 본 연구 결과는 유연 기판 상에 제작된 OLED 소자에 적용 가능한 기술로서 소자 수명의 연장 뿐만 아니라 경량화에도 기여할 수 있는 기술이다.

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