• 제목/요약/키워드: Thermal conductivity coefficient

검색결과 326건 처리시간 0.02초

Jang and Choi's Model과 다양한 점성계수 모텔을 이용한 나노유체에서의 자연대류 특성 (Natural Convection of Nanofluids Using Jang and Choi's Model for Effective Thermal Conductivity and Various Models for Effective Viscosity)

  • 황교식;장석필
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2005년도 동계학술발표대회 논문집
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    • pp.539-545
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    • 2005
  • In this paper, the thermal characteristics of natural convection in a rectangular cavity with nanofluids such as water-based nanofluids containing alumina are theoretically investigated with a new model of the thermal conductivity for nanofluids presented by Jang and Choi and various models for effective viscosity. In addition, based on theoretical results, the effects of various parameters such as the volume fraction, the temperature, and the size of nanoparticles on free convective instability and heat transfer characteristics in a rectangular cavity with nanofluids are suggested.

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Effect of Nano-silicate on the Mechanical, Electrical and Thermal Properties of Epoxy/Micro-silica Composite

  • Park, Jae-Jun
    • Transactions on Electrical and Electronic Materials
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    • 제13권3호
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    • pp.153-156
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    • 2012
  • In order to develop electrical insulation materials, epoxy/micro-silica composite (EMC) and epoxy/micro-silica/nano-silicate composite (EMNC) were prepared, and their tensile and flexural strength, AC insulation breakdown strength and thermal conductivity and thermal expansion coefficient were compared. Nano-silicate was prepared in an epoxy matrix by our AC electric field process. All properties of the neat epoxy were improved by the addition of micro-silica, which was improved much further by the addition of nano-silicate to the EMC system.

반응성 액상 소결법으로 제조한 다공성 Mg3Sb2계 화합물의 열전물성 (Thermoelectric Properties of Porous Mg3Sb2 Based Compounds Fabricated by Reactive Liquid Phase Sintering)

  • 장경욱;김인기;김일호
    • 한국재료학회지
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    • 제25권2호
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    • pp.68-74
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    • 2015
  • The porous $Mg_3Sb_2$ based compounds with 60~70% of relative density were prepared by powder compaction at room temperature and reactive liquid phase sintering at 1023 K for 4hrs. The stoichiometric $Mg_3Sb_2$ compounds were synthesized from elemental Sb and Mg powder in the mixing range of 61~63 at% Mg. The increased scattering effect due to the micro-pores reduced the mobility of the charge carrier and the phonon, which caused the electrical conductivity and the thermal conductivity to decrease, respectively. But the scattering effect was greater for the electrical conductivity than for the thermal conductivity. Excess Mg alloyed in the $Mg_3Sb_2$ compounds decreased the electrical conductivity, but had no effect on the thermal conductivity. On the other hand, the large increase of the Seebeck coefficient was the result of a decrease in the charge carrier density due to the excess Mg. Dimensionless figure of merit of the porous $Mg_3Sb_2$ compound reached a maximum value of 0.28 at 61 at% Mg. The obtained value was similar to that of $Mg_3Sb_2$ compounds having little pores.

나노 분말을 Spark Plasma 소결해 제조한 PbTe의 열전 특성 (Thermoelectric Properties of PbTe Prepared by Spark Plasma Sintering of Nano Powders)

  • 전은영;김호영;김참;오경식;정태주
    • 한국분말재료학회지
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    • 제25권5호
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    • pp.384-389
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    • 2018
  • Nanoparticles of PbTe are prepared via chemical reaction of the equimolar aqueous solutions of $Pb(CH_3COO)_2$ and Te at $120^{\circ}C$. The size of the obtained particles is 100 nm after calcination in a hydrogen atmosphere. Dense specimens for the thermoelectric characterization are produced by spark plasma sintering of prepared powders at $400^{\circ}C$ to $500^{\circ}C$ under 80 MPa for 5 min. The relative densities of the prepared specimens reach approximately 97% and are identified as cubic based on X-ray diffraction analyses. The thermoelectric properties are evaluated between $100^{\circ}C$ and $300^{\circ}C$ via electrical conductivity, Seebeck coefficient, and thermal conductivity. Compared with PbTe ingot, the reduction of the thermal conductivities by more than 30% is verified via phonon scattering at the grain boundaries, which thus contributes to the increase in the figure of merit.

Investigation of the Thermal-to-Electrical Properties of Transition Metal-Sb Alloys Synthesized for Thermoelectric Applications

  • Jong Min Park;Seungki Jo;Sooho Jung;Jinhee Bae;Linh Ba Vu;Kwi-Il Park;Kyung Tae Kim
    • 한국분말재료학회지
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    • 제31권3호
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    • pp.236-242
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    • 2024
  • The development of thermoelectric (TE) materials to replace Bi2Te3 alloys is emerging as a hot issue with the potential for wider practical applications. In particular, layered Zintl-phase materials, which can appropriately control carrier and phonon transport behaviors, are being considered as promising candidates. However, limited data have been reported on the thermoelectric properties of metal-Sb materials that can be transformed into layered materials through the insertion of cations. In this study, we synthesized FeSb and MnSb, which are used as base materials for advanced thermoelectric materials. They were confirmed as single-phase materials by analyzing X-ray diffraction patterns. Based on electrical conductivity, the Seebeck coefficient, and thermal conductivity of both materials characterized as a function of temperature, the zT values of MnSb and FeSb were calculated to be 0.00119 and 0.00026, respectively. These properties provide a fundamental data for developing layered Zintl-phase materials with alkali/alkaline earth metal insertions.

플라즈마 아크 용해 공정으로 자발합성된 질화알루미늄 강화 알루미늄기지 복합재료의 개발 (Fabrication of Aluminum Nitride Reinforced Aluminum Matrix Composites via Plasma Arc Melting under Nitrogen Atmosphere)

  • 정수진;이제인;박은수
    • Composites Research
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    • 제36권2호
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    • pp.101-107
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    • 2023
  • 본 연구에서는 질화알루미늄을 강화재로 갖는 알루미늄기지 복합재료를 질소 분위기에서의 아크용해 공정을 통해 제조하였다. 알루미늄과 질소 원자의 화학반응을 1분간 유지시켰을 때, 중간층과 라멜라층으로 구분되는 질화알루미늄 강화상이 자발적으로 알루미늄 용탕 내부에 형성되어 기지 전반에 분포되었다. 복합재료는 약 10 vol.%의 AlN을 가지며, 이 강화재는 계면에서 낮은 열저항과 강한 결합을 보였다. 제조된 복합재료는 열전도도가 높고 열팽창계수는 낮은 열적 특성 조합을 보였다. 또한, 본 연구의 복합재료는 이종원소인 실리콘을 기지에 첨가함으로써 열팽창계수를 추가적으로 감소시키는 것이 가능했다. 이는 아크 용해법으로 제조된 알루미늄기지 복합재료가 낮은 열팽창계수를 요구하는 방열소재로 적용될 수 있는 가능성을 시사한다.

열 증착법으로 제조된 CNT/Al/Cu 복합 파이버의 전기적 특성 (Electrical Properties of CNT/Al/Cu Composite Fiber Deposited by Thermal Vacuum Evaporation)

  • 김종석;신백균
    • 한국전기전자재료학회논문지
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    • 제34권2호
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    • pp.105-109
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    • 2021
  • CNT fiber has been in the spotlight as a conductor, but the conductivity of CNT fibers do not match that of CNT. This study reveals that the conductivity of CNT fiber can be improved by depositing Al/Cu through vacuum evaporation. Cu is commonly used for deposition on CNT fibers. But low bonding strength of the interface between CNT and Cu could be a disadvantage. To overcome this, Al was deposited on the CNT fiber for forming aluminum carbide islands to increase the interfacial bonding strength. The conductivity characteristics were improved as the deposition time increased. The resistance was measured as a function of temperature, demonstrating that the temperature coefficient of resistance (TCR) is improved to be 241 ppm/℃ in comparison with that of as-received CNT fibers at -1,251 ppm/℃, when the CNT fibers are deposited with Al and Cu, respectively, for 90s and for 540s.

하이브리드 필러를 함유한 에폭시 복합체의 열적 특성 연구 (A Study on Thermal Properties of Epoxy Composites with Hybrid Fillers)

  • 이승민;노호균;이상현
    • 마이크로전자및패키징학회지
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    • 제26권4호
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    • pp.33-37
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    • 2019
  • 본 연구는 에폭시 내 Cu, h-BN 및 GO 분말을 포함한 이종의 필러를 활용하여 점진적인 열적 특성을 구현하였다. 단일 복합체 내에서 상대적으로 무거운 Cu 및 h-BN 분말은 하부 층에 주로 존재하는 반면, 가벼운 GO 분말은 복합체의 상부층에 분산되었다. 이종 필러를 함유한 GO/h-BN (GO/Cu) 에폭시 복합체의 열전도도는 0.55(0.52) W/m·K에서 2.82(1.37) W/m·K로 점진적으로 증가했다. 반대로 열팽창 계수는 GO/Cu와 GO/h-BN 에폭시 복합체 내에서 51 ppm/℃에서 23 ppm/℃으로, 57 ppm/℃에서 32 ppm/℃으로 각각 감소되었다. 이러한 복합체 내의 열적 특성의 변화는 열전도도, 형태 및 필러의 비중에 따른 분포를 포함하여 필러의 고유한 물성에 의해 발생한다. 서로 다른 물성을 가진 필러 물질을 동일한 매트릭스 내에 도입을 통한 점진적 열적 특성의 구현은 반도체/플라스틱, 금속/플라스틱, 반도체/금속 등의 이종 구조로 이루어진 계면에서 효과적인 열전달을 위한 계면소재로서 유용할 것이다.

상압소결 질화알루미늄의 소결 첨가제 변화에 따른 열적 및 기계적 특성 (Effects of Sintering Additives on the Thermal and Mechanical Properties of AlN by Pressureless Sintering)

  • 황진욱;문소윤;남상용;도환수
    • 한국분말재료학회지
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    • 제26권5호
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    • pp.395-404
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    • 2019
  • Aluminum nitride (AlN) has excellent electrical insulation property, high thermal conductivity, and a low thermal expansion coefficient; therefore, it is widely used as a heat sink, heat-conductive filler, and heat dissipation substrate. However, it is well known that the AlN-based materials have disadvantages such as low sinterability and poor mechanical properties. In this study, the effects of addition of various amounts (1-6 wt.%) of sintering additives $Y_2O_3$ and $Sm_2O_3$ on the thermal and mechanical properties of AlN samples pressureless sintered at $1850^{\circ}C$ in an $N_2$ atmosphere for a holding time of 2 h are examined. All AlN samples exhibit relative densities of more than 97%. It showed that the higher thermal conductivity as the $Y_2O_3$ content increased than the $Sm_2O_3$ additive, whereas all AlN samples exhibited higher mechanical properties as $Sm_2O_3$ content increased. The formation of secondary phases by reaction of $Y_2O_3$, $Sm_2O_3$ with oxygen from AlN lattice influenced the thermal and mechanical properties of AlN samples due to the reaction of the oxygen contents in AlN lattice.