• 제목/요약/키워드: Thermal conductivity (TC)

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Determination of Relationship between Thermal and Mechanical Properties of Wood Material

  • Ozcan, Cemal;Korkmaz, Mustafa
    • Journal of the Korean Wood Science and Technology
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    • 제47권4호
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    • pp.408-417
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    • 2019
  • Non-destructive test techniques are becoming increasingly important for assessment and maintenance. These techniques are very useful for assessment of materials such as wood, whose performance can vary considerably depending on the conditions of use. It is possible to estimate some mechanical properties of a material by determining the movement of energy through the material with the help of these techniques. In this study, it was investigated whether the wood material could be tested nondestructively by the heat energy produced by a source. The correlations between the thermal conductivity and mechanical properties of Scots pine (Pinus sylvestris L.) and sessile oak (Quercus petraea L.) woods were investigated. The thermal conductivity (TC), density, modulus of rupture (MOR), compression strength (CS), and modulus of elasticity (MOE) values of samples were measured according to the related standards and these values were correlated with each other. The linear and multiple regression tests were employed to determine the correlation between thermal conductivity and mechanical properties. The results showed that there is a very strong correlation between thermal conductivity and both density and MOR values. However, the correlations between TC and both MOE and CS were moderate. The results of this study suggest that the thermal conductivity value can be used to estimate the density and some mechanical properties of wood.

Development of Nano-Tungsten-Copper Powder and PM Processes

  • Lee, Seong;Noh, Joon-Woong;Kwon, Young-Sam;Chung, Seong-Taek;Johnson, John L.;Park, Seong-Jin;German, Randall M.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
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    • pp.377-378
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    • 2006
  • Thermal management technology is a critical element in all new chip generations, caused by a power multiplication combined with a size reduction. A heat sink, mounted on a base plate, requires the use of special materials possessing both high thermal conductivity (TC) and a coefficient of thermal expansion (CTE) that matches semiconductor materials as well as certain packaging ceramics. In this study, nano tungsten coated copper powder has been developed with a wide range of compositions, 90W-10Cu to 10W-90Cu. Powder technologies were used to make samples to evaluate density, TC, and CTE. Measured TC lies among theoretical values predicted by several existing models.

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Effects of Surface Nitrification on Thermal Conductivity of Modified Aluminum Oxide Nanofibers-Reinforced Epoxy Matrix Nanocomposites

  • Kim, Byung-Joo;Bae, Kyong-Min;An, Kay-Hyeok;Park, Soo-Jin
    • Bulletin of the Korean Chemical Society
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    • 제33권10호
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    • pp.3258-3264
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    • 2012
  • Aluminum oxide ($Al_2O_3$) nanofibers were treated thermally under an ammonia ($NH_3$) gas stream balanced by nitrogen to form a thin aluminum nitride (AlN) layer on the nanofibers, resulting in the enhancement of thermal conductivity of $Al_2O_3$/epoxy nanocomposites. The micro-structural and morphological properties of the $NH_3$-assisted thermally-treated $Al_2O_3$ nanofibers were characterized by X-ray diffraction (XRD) and atomic force microscopy (AEM), respectively. The surface characteristics and pore structures were observed by X-ray photoelectron spectroscopy (XPS), Zeta-potential and $N_2$/77 K isothermal adsorptions. From the results, the formation of AlN on $Al_2O_3$ nanofibers was confirmed by XRD and XPS. The thermal conductivity (TC) of the modified $Al_2O_3$ nanofibers/epoxy composites increased with increasing treated temperatures. On the other hand, the severely treated $Al_2O_3$/epoxy composites showed a decrease in TC, resulting from a decrease in the probability of heat-transfer networks between the filler and matrix in this system due to the aggregation of nanofiber fillers.

보강 흙벽의 열전도 특성 (Property of Thermal Conduction of Reinforced Soil Wall)

  • 장병욱;서동욱;박영곤
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 1999년도 Proceedings of the 1999 Annual Conference The Korean Society of Agricutural Engineers
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    • pp.638-644
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    • 1999
  • The objectives of the study are to investigate thermal conductivity(TC) and coefficient of thermal transmission (CTT) according to the type of soils, the presence of reinforceemnt, temperature, relative humidity and to analyze experimentally the characteristics of thermal transfer of reinforced soil wall. Results are summarized as follows ; 1) Clayey soil has high value of TC and CTT than sandy soil. 2) TC and CTT of reinforced soil wall is about 6∼17% higher than those of reinforced one, 3) It is founded that the effect of relative humidity on the soil wall is important at the same temperature and 4) As the temperature is high, it is appeared that TC and CTT are high.

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팽창흑연/에리스리톨 복합체의 열적거동에 관한 연구 (A Study on Thermal Behaviors of Expanded Graphite/Erythritol Composites)

  • 최보경;최웅기;국윤수;김홍건;서민강
    • 공업화학
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    • 제25권5호
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    • pp.463-467
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    • 2014
  • 본 연구에서는 팽창흑연의 함량 변화를 달리하여 제조한 팽창흑연/에리스리톨 복합체의 열적거동에 관하여 고찰하였다. 팽창흑연이 도입된 팽창흑연/에리스리톨 복합체의 표면 및 구조특성은 scanning electron microscope (SEM), transmission electron microscope (TEM), 그리고 X-ray diffraction (XRD)를 이용하여 관찰하였으며, 열적특성은 differential scanning calorimetry (DSC)와 thermal conductivity (TC)를 이용하여 분석하였다. 실험 결과 팽창흑연의 함량이 증가함에 따라 팽창흑연/에리스리톨 복합체의 열전도도가 증가하였으며, 반면에 잠열은 팽창흑연의 존재 하에 약간 감소하였다. 결론적으로 팽창흑연은 상변이 물질의 높은 열 전달성능 및 열 저장능력을 향상시키는데 적합한 소재라 판단된다.

구조모델을 이용한 암석의 유효열전도도 분석 (Analyzing Effective Thermal Conductivity of Rocks Using Structural Models)

  • 차장환;구민호;김영석;이영민
    • 자원환경지질
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    • 제44권2호
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    • pp.171-180
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    • 2011
  • 화강암, 사암, 편마암으로 구성된 21개 암석시료를 대상으로 열전도도를 측정하고, XRD 정량분석을 통해 구성광물의 조성을 파악하였으며, 구조모델 이용하여 석영 함량 및 광물입자의 크기가 암석의 유효열전도도에 미치는 영향을 분석하였다. 측정된 열전도도는 석영 함량과 높은 상관성을 보여 ($R^2=0.75$), 석영 함량으로부터 열전도도를 추정할 수 있는 선형회귀모형을 제시하였다. 화강암 및 변성암 일부 시료의 경우 유사한 석영 함량에도 불구하고 열전도도가 크게 다른 값을 보였는데, 이는 주로 광물업자의 크기 변화와 관련이 있는 것으로 나타났다. 구조모델을 통한 분석 결과 입자의 크기가 작은 경우 열전도도는 scries와 EMT모델의 중간 영역에 해당하는 값을 보이며, 입자가 커지면서 EMT모델, ME모델을 거쳐 Parallel모델에 근접하게 변화하였다. 이러한 열전달 구조모델의 변화는 입자의 크기에 따른 열전도도 변화가 3 mm 두께의 원반시편을 이용하는 실험 규모와 관련이 있음을 시사한다. 즉, 얇은 원반 시료를 이용하여 암석의 열전도도를 측정할 경우 규모효과에 의하여 실제 지반의 값보다 과대평가될 가능성이 높으며, 특히 광물 입자의 크기가 클수록 이러한 오차는 더 커질 것으로 예상된다. 따라서 지열과 관련된 다양한 해석 모델에서 실험실 측정값을 실제 현장규모에서의 대표값으로 사용할 경우 모델의 예측 신뢰도에 영향을 줄 수 있는 요인으로 작용할 수 있다.

Comparison of the effects of irradiation on iso-molded, fine grain nuclear graphites: ETU-10, IG-110 and NBG-25

  • Chi, Se-Hwan
    • Nuclear Engineering and Technology
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    • 제54권7호
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    • pp.2359-2366
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    • 2022
  • Selecting graphite grades with superior irradiation characteristics is important task for designers of graphite moderation reactors. To provide reference information and data for graphite selection, the effects of irradiation on three fine-grained, iso-molded nuclear grade graphites, ETU-10, IG-110, and NBG-25, were compared based on irradiation-induced changes in volume, thermal conductivity, dynamic Young's modulus, and coefficient of thermal expansion. Data employed in this study were obtained from reported irradiation test results in the high flux isotope reactor (HFIR)(ORNL) (ETU-10, IG-110) and high flux reactor (HFR)(NRL) (IG-110, NBG-25). Comparisons were made based on the irradiation dose and irradiation temperature. Overall, the three grades showed similar irradiation-induced property change behaviors, which followed the historic data. More or less grade-sensitive behaviors were observed for the changes in volume and thermal conductivity, and, in contrast, grade-insensitive behaviors were observed for dynamic Young's modulus and coefficient of thermal expansion changes. The ETU-10 of the smallest grain size appeared to show a relatively smaller VC to IG-110 and NBG-25. Drastic decrease in the difference in thermal conductivity was observed for ETU-10 and IG-110 after irradiation. The similar irradiation-induced properties changing behaviors observed in this study especially in the DYM and CTE may be attributed to the assumed similar microstructures that evolved from the similar size coke particles and the same forming method.

지중 열교환기 설계를 위한 화강암의 열물성 연구 (Thermal Properties of Granite for Installation of Underground Heat Exchanger)

  • 김종찬;이영민;구민호
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 춘계학술대회
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    • pp.456-459
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    • 2007
  • Thermal conductivities (TC) of 57 Jurassic muscovitic granite samples (KIGAM) and 149 porphyritic granite samples (Yeonki: BE-2, BE-3) were measured with LFA-447. Ranges of TC values are $2.429{\sim}3.878$ W/mK (KIGAM), $2.220{\sim}3.767$ W/mK (Yeonki, BE-2) and $2.019{\sim}3.990$ W/mK (Yeonki, BE-3); arithmetic means are 2.924 W/mK (KIGAM), 2.907 W/mK (Yeonki, BE-2), and 2.881 W/mK (Yeonki, BE-3), respectively. In this study, harmonic mean values were calculated to estimate the average value of TC. Harmonic mean values are 2.883 W/mK (KIGAM), 2.886 W/mK (Yeonki, BE-2), and 2.866 W/mK (Yeonki, BE-3), respectively. Heat extraction rates of a borehole heat exchanger strongly depend on TC values. Heat-extraction rates from re values are expected to be a little lower than 84 W/m in all sites. However, considering ground water flow, it is expected that actual heat extraction rate would be higher than the expected value.

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전도냉각되는 1-2kV급 고온초전도 직류리액터 전류도입부의 전기적 절연에 대한 연구 (Study on the Electrical Insulation of Current Lead in the conduction-cooled 1-2kV Class High-Tc Superconducting DC Reactor)

  • 배덕권;안민철;이찬주;정종만;고태국;김상현
    • 한국초전도ㆍ저온공학회논문지
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    • 제4권1호
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    • pp.30-34
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    • 2002
  • In this Paper, Insulation of current lead in the conduction-cooled DC reactor for the 1.2kV class 3 high-Tc superconducting fault current limiter(SFCL) is studied. Thermal link which conducts heat energy but insulates electrical energy is selected as a insulating device for the current lead in the conduction-cooled Superconducting DC reactor. It consists of oxide free copper(OFC) sheets, Polyimide films, glass fiberglass reinforced Plastics (GFRP) plates and interfacing material such an indium or thermal compound. Through the test of dielectric strength in L$N_2$, polyimide film thickness of 125 ${\mu}{\textrm}{m}$ is selected as a insulating material. Electrical insulation and heat conduction are contrary to each other. Because of low heat conductivity of insulator and contact area between electrical insulator and heat conductor, thermal resistance of conduction-cooled system is increased. For the reducing of thermal resistance and the reliable contact between Polyimide and OFC, thermal compound or indium can be used As thermal compound layer is weak layer in electrical field, indium is finally selected for the reducing of thermal resistance. Thermal link is successfully passed the test. The testing voltage was AC 2.5kVrms and the testing time was 1 hour.

저경도 Poly(organosiloxane) Rubber Composite의 제조와 열전도 특성 (Preparation and Thermal Conductivity of Poly(organosiloxane) Rubber Composite with Low Hardness)

  • 강두환;여학규
    • 폴리머
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    • 제29권2호
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    • pp.161-165
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    • 2005
  • Octamethylcyclotetrasiloxane$(D_4)$과 1,3,5-trimethyl-1,3,5-triphenylcyclotrisiloxane$(D_3^{MePh})$을 1,1,3,3,-tetramethyl-1,3-divinylsiloxane(MVS)과 평형중합시켜 dimethylsiloxane과 methylphenylsiloxane block unit를 갖는 $\alpha,\omega-vinyl$ poly(dimethyl-methylphenyl)siloxane prepolymer(VPMPS)를 제조하였으며 또한 $D_4$와 1,3,5-trimethyl-1,3,5-trifluoropropylcyclotrisiloxane $(D_3^{M3,F3P})$을 1,1,3,3-tetramethyldisiloxane과 평형중합시켜 dimethylsiloxane과 methyltrifluoropropyl siloxane block unit를 갖는 $\alpha,\omega-hydrogen$ poly(dimethyl-methyltrifluoropropyl)siloxane prepolymer(HPDMFS)를 제조하였다. VPMPS, HPDMFS, 열전도 필터 및 촉매를 고속교반기에 가하고 $130^{\circ}C$에서 컴파운딩하여 저경도 poly(organosiloxane) rubber를 제조하였으며 이의 가교밀도는 $115^{\circ}C$에서 oscillation rheometer를 이용하여 측정하였다. 열전도성 충전제로 구상 알루미나를 Horsfield's packing model에 따라 평균입자경의 분포를 조절하여 제조한 composite TC-POXR-2의 열전도도가 1.13 W/mK, 그리고 TC-POXR-4가 1.19 W/mK였으며 이는 단일입자경을 갖는 충전제를 가하여 제조한 경우보다 높은 열전도성을 나타내었다.