• 제목/요약/키워드: thermal insulating material

검색결과 175건 처리시간 0.027초

열반사성 외장마감재의 온도조절 성능에 관한 연구 (A Study on the Temperature Controlled Performance of Thermal Reflective Exterior Finishes)

  • 류화성;신상헌;송성용;김득모
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2019년도 춘계 학술논문 발표대회
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    • pp.186-187
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    • 2019
  • In modern times, due to the centralized urban structure, the interval between buildings is narrow and the increase of the heat island phenomenon due to the accumulation of the structure is becoming a social problem. In order to solve these problems, various materials for reducing the surface temperature of buildings are under study. Particularly, in the case of a wall part which is a part directly affected by the outside air of the building, it is a main structural part for determining the room temperature. The purpose of this study was to develop a material that can improve the thermal environment performance of the building by evaluating the temperature control performance of the exterior finishing material using the heat reflecting material as a method for controlling the temperature of the outer wall finishing material.

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칼슘실리케이트 무기 단열소재의 양생기간에 따른 물리 특성 (Physical Properties of Calcium Silicate Inorganic Insulation Depending on Curing Time)

  • 박재완;추용식;정재현
    • 한국건축시공학회지
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    • 제16권6호
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    • pp.529-534
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    • 2016
  • 칼슘실리케이트계 무기단열소재는 주원료로 시멘트를 90%를 사용하는 다공성 무기단열소재이다. 기존 무기단열소재와 달리 고온의 수화반응 처리가 없기 때문에 가격이 저렴하며, 불연소재의 원료를 사용하여 화제의 위험성도 적다. 칼슘실리케이트 단열소재는 $0.13g/cm^3$의 밀도와 0.050W/mK이하의 우수한 열전도도를 갖는 단열소재이다. 칼슘실리케이트 단열소재는 경량화 될수록 내부 기포를 다량 함유해야 하며 기포를 다량 함유함에 따라 단열성 또한 우수해진다. 본 연구에서는 다량의 기포를 함유하며 일정강도발현을 목표로, 칼슘실리케이트계 무기단열소재의 주성분인 시멘트가 수화반응에 따라 초기 및 장기강도발현하는 특성을 이용하여 칼슘실리케이트계 무기단열소재에 적용하여 물리적 특성을 알아보고자 하였다.

다공성 TiO2-SiO2 복합 단열재의 열전도율 평가 (Evaluation of Thermal Conductivity of Porous TiO2-SiO2-Base Thermal Insulation)

  • 최병철;김종호;김종범;정우남;이상현
    • 융복합기술연구소 논문집
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    • 제8권1호
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    • pp.21-25
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    • 2018
  • We developed nano-porous $TiO_2-SiO_2$ composites (commercial name : PTI, porous titania insulator) with low thermal conductivity as thermal insulating material as well as function of photocatalyst. The objectives of this paper are, firstly, to evaluate of the thermal conductivity of the PTI powder in the temperature range from -160 to $250^{\circ}C$, secondly to evaluate of thermal conductivities of insulation materials that is applied PTI powder. The structure of the PTI powder that has the pores size of 20-30 nm and the particle diameter of 2-10 nm. The PTI had a high surface area of $400m^2/g$ and a mean pore size of $45{\AA}$, which was fairly uniform. The thermal conductivity was measured by GHP(guarded hot plate) method and HFM(heat flux method). The PTI structure is a three-dimensional network nano-structures composed by a pearl-necklace that involved a precious stone in the center of the necklace. The thermal conductivities of PTI-PX powder by the GHP and HFM were 0.0366 W/m.K, 0.0314 W/m.K at $20^{\circ}C$, respectively. This is similar to values that are proportional to the square of the absolute temperature of the thermal conductivity of static air. The thermal conductivities of insulating sheets coated with PTI powder were similar results with that of the PTI powder.

가속열화에 따른 식물성절연유의 화학적.전기적 특성 분석 (Analysis on the Chemical and Electrical Characteristic of Vegetable oil by Accelerated Aging)

  • 최순호;정중일;허창수
    • 전기학회논문지
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    • 제60권5호
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    • pp.984-989
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    • 2011
  • Electrical insulation is one of the most important part in a high voltage apparatus. Recently, researchers are interested in the environmental friendly vegetable oil from environmental viewpoint. Accelerated aging transformer insulating material in vegetable oil was compared to that of mineral oil. Accelerated aging oil samples produced in the oven at $140^{\circ}C$ for 500, 1000, 1500, 2000hours. And Real transformer insulation oils samples of vegetable oil and mineral oil were aged by thermal cycles repeating from $30^{\circ}C$ to $120^{\circ}C$. Samples were analyzed at 42, 63, 93, 143, 190, 240, 300 cycles. The mineral and vegetable insulating oils were investigated for breakdown voltage, water content, total acid number, viscosity, volume resistivity, insulating paper and oil permittivity, and dissolved gas analyses. The breakdown voltage of the vegetable insulating oil is higher than that found for the mineral oil; the accelerated aging progress decreased the breakdown voltage. The vegetable oil had a higher water saturation than the mineral oil; the vegetable oil has the superior water characteristics and breakdown voltage. And high viscosity of vegetable oil, care has to be taken, especially when designing the cooling system for a large transformer.

건축물의 지하공간을 위한 단열재의 특성 분석 및 설계 기준 수립 (Establishment of Design Standard and Analysis of Insulation Property for Underground Space in Architecture)

  • 황민규;조우진;김강수
    • KIEAE Journal
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    • 제13권2호
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    • pp.107-112
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    • 2013
  • The purpose of this study is to analyze an insulation property and to establish a design standard for the underground space in architecture. Insulation materials for this study are 12 kinds of Insulation which qualified KS standards(3 classes of EPS type 1, 3 classes of EPS type 2(Neopor), 3 classes of XPS and 3 classes of PU Boards). For insulation materials of underground space, insulating and water tightening property are desired. So conductivity for insulating and water absorption for water tightening are measured in this study. Temperature, insulation is exposed to in the underground space, is different from temperature above the ground. Conductivity is measured in a temperature of $17^{\circ}C$, $20^{\circ}C$, $23^{\circ}C$ and $26^{\circ}C$. In KS standards, water absorption are measure after 24 hours, but insulation is exposed to water for a long time in the underground. So after 110 days, water absorption are measured. As time goes by, increasing of water absorption means decreasing of water tightening and insulating. So after water absorption had measured for 110 days, conductivity has measured again. As a result, XPS is selected as optimized insulation for underground. And Conductivity of XPS insulation with water should be added by 20%.

천연섬유질과 다공성 세라믹볼을 심재로 사용한 복합단열재의 물성 (Physical Properties of Insulating Composite Materials Using Natural Cellulose and Porous Ceramic Balls as a Core Materials)

  • 황의환;조성준;김진만
    • 공업화학
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    • 제22권5호
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    • pp.501-507
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    • 2011
  • 친환경 복합단열재를 개발하기 위하여 천연섬유질과 다공성 세라믹볼을 심재로, 활성황토를 결합재로 사용하였다. 물/결합재비 및 심재/결합재비를 다양하게 변화시켜 공시체를 제작하였으며, 공시체의 제 물성을 조사하기 위하여 압축강도, 휨강도, 흡수성, 내열수성, 세공분석, 열전도율 및 SEM에 의한 미세조직 관찰을 실시하였다. 그 결과 최대 압축강도는 물/결합재비와 심재/결합재비에 따라 다양하게 나타났으나 휨강도는 심재/결합재비가 증가될수록 물/결합재비에 관계없이 높게 나타났다. 내열수성시험 후에 측정한 압축 및 휨강도는 내열수성시험 전에 측정한 값에 비하여 압축 및 휨강도 모두 현저하게 저하되었다. 내열수성시험 후에 측정한 세공분석에서 결합재의 수화반응이 촉진됨으로서 세공의 평균직경, 총세공량 및 공극률은 감소되었으나 밀도는 증가되었다. 열전도율은 심재/결합재비가 증가될수록 낮아졌다. 복합단열재의 단열성과 기계적강도가 우수하여 실용화에 문제가 없는 것으로 평가되었다.

수열합성법을 이용한 무기계 단열소재 제조방법 및 특성에 관한 연구 (1) (A Study on Fabrication and Characterization of Inorganic Insulation Material by Hydrothermal Synthesis Method (1))

  • 서성관;추용식;이종규;송훈;박재완
    • 한국건설순환자원학회논문집
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    • 제1권3호
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    • pp.219-224
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    • 2013
  • 본 연구에서는 규석, 시멘트, 생석회 및 소량의 무수석고를 사용하여 미네랄 하이드레이트 단열소재를 제조하였다. 슬러리의 특성 분석을 선행한 후, $CaO/SiO_2$ 몰비 변화에 따른 배합설계를 통해 최적 배합비를 도출하였다. 도출된 배합 설계비를 기준으로 혼합수 함량 및 수열합성 조건에 따른 소재의 특성을 측정, 평가하였다. 초적 조건으로 제조된 미네랄 하이드레이트 소재의 특성은 각각 밀도 $0.26g/cm^3$, 압축강도 0.4MPa, 열전도율 0.064W/mK로 나타났다. 이는 기존의 ALC(Autoclaved Lightweight Concrete) 소재의 성능을 한층 개선한 결과로서, 향후 지속적인 열적특성 개선 연구를 수행하여 유기 및 무기 단열재를 대체하여 새로운 개념의 무기계 단열재로 사용 가능할 것이라 판단된다.

Eicosanoic Acid Langmuir-Blodgett(LB) 박막을 이용한 분자 다이오드의 전기적 특성 (Electrical Properties of Molecular Diode Using Eicosanoic Acid Langmuir-Blodgett(LB) Monolayer Film)

  • 구자룡;이호식;권혁주;손병청
    • 한국응용과학기술학회지
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    • 제20권2호
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    • pp.148-153
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    • 2003
  • Electron transfer through an Langmuir-Blodgett(LB) monolayer film sandwiched between metal electrodes. We used an eicosanoic acid material and the material was very famous as a thin film insulating material. Eicosanoic acid monolayer was deposited by Langmuir-Blodgett(LB) technique and a subphase was a $CdCl_2$ solution as a 2${\times}10^{-4}$ mol/L. Also we used a bottom electrode as an Al/$Al_2O_3$ and a top electrode as a Al and Ti/Al. Here, the $Al_2O_3$ on the bottom electrode was deposited by thermal evaporation method. The $Al_2O_3$ layer was acted on a tunneling barrier and insulating layer in tunnel diode. It was found that the proper transfer surface pressure for film deposition was 25 mN/m and the limiting area per molecule was about 24 ${\AA}^2$/molecule. When the positive and negative bias applied to the molecular device, the behavior shows that a tunnel switching characteristics. This result were analyzed regarding various mechanisms.

Thermal stabilities and dynamic mechanical properties of dielectric materials for next generation PCB

  • 조재춘;이화영;임성택;박문수;이근용;오준록
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2008년도 하계학술대회 논문집 Vol.9
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    • pp.253-253
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    • 2008
  • Recently, high performance microelectronic devices are designed in multi-layer structure in order to make dense wiring of metal conductors in compact size. For making dense wiring of metal conductors, we investigated CTE and peel strength of dielectric materials for next generation PCB. It is an object of this research to develop an epoxy resin composition for an interlayer insulating material exhibiting low CTE and high peel strengnth and making an insulating layer thinner.

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Experimental Investigation on Dielectric and Thermal Characteristics of Nanosized Alumina Filler Added Polyimide Enamel

  • Sugumaran, C. Pugazhendhi
    • Journal of Electrical Engineering and Technology
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    • 제9권3호
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    • pp.978-983
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    • 2014
  • The polymer nano composite possess good priority recently for engineering applications. Especially the electrical insulating materials attract the high performance of nano composites. In this work the ballmill synthesiation process of nano sized Alumina ($Al_2O_3$), the preparation of new nano composite material with an content of enamel and synthesized Alumina as 1wt%, 3wt% and 5wt%. Experimental investigation has been carried out for the prepared nano composites materials with respect to dielectric parameter measurements such as dielectric loss (tan ${\delta}$), dielectric constant (${\varepsilon}$), dielectric strength under various temperature. The partial discharge level also measured for all the samples and the PD inception voltage is also observed and compared. Weight loss of the material has been analyzed through TGA. It has been experimentally proved that 3wt% of Alumina nano filler added enamel has significant improvement in the dielectric and thermal properties.