• Title/Summary/Keyword: 열적 특성

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A thermal safety design of slotless bldcm using MRSM (다중표면반응법을 이용한 Slotless BLDCM의 열특성 안정화 설계)

  • Cha, Hyun-Rok;Lee, Sung-Ho;Baek, Seung-Hun
    • Proceedings of the KIEE Conference
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    • 2007.10c
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    • pp.39-40
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    • 2007
  • 본 논문은 Slotless BLDCM의 발열특성에 고려하여 열 발생을 최소화 하고자 다중 반응표면법을 적용하여 모터의 형상 및 권선 사양의 최적 선정에 관한 연구이다. 본 연구에서는 전류밀도의 최소화를 목적함수로 하여 형상 및 권선 사양의 최적화를 실시하였다. 변수에 대한 영향도의 분석은 전자계 해석을 통한 결과값을 통하여 실시하였으며, 열적 특성을 파악하기 위해서 전자계-열계의 해석을 통해서 최적값의 열적 안정성을 파악하였다.

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Thermal and electrical Characteristics of Epoxy-Nanocomposites according to AIN Nanoparticles Surface Treatment (Epoxy/AIN Nanoparticles의 표면처리에따른 에폭시-Nanocomposites 열적 그리고 전기적 특성연구)

  • Lee, Chang-Hun;Kim, Jong-Min;Kim, Jae-Bong;Lee, Sang-Hyup;Kim, Do-Hwan;Park, Jae-Jun
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2009.11a
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    • pp.149-149
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    • 2009
  • 본 연구는 고압전력용 중전기기의 몰드절연 및 옥외용 LED의 절연소재는 기기내부에서 발생된 열에너지를 외부로 방사시키는 것이 무엇보다 중요한 것이다. 이런 이유로 고압전력용 전력기기 대부분은 상당한 체적분을 가지고 있기에 초절연을 가지면서 고열전도를 갖는 나노콤포지트를 개발하기위해 에폭시 메트릭스 기반 질화알루미륨의 표면 처리를 실시하여 에폭시 AIN Nanocomposites를 제조하였다. 나노입자의 균질분산은 나노콤포지트 열전도와 초절연성능에 크게 영향을 주게 된다. 이런 소재개발을 위해 에폭시메트릭스에 나노입자의 충진함량을 3wt%로 하였다. 전처리공정을 통하여 에폭시-나노콤포지트에 두 종류의 금속성 coupling agent (Tyzor TE, Tyzor AA-75)를 질화알루미륨 나노입자 표면처리를 건식법으로 실시하였다. 제조된 Epoxy-AIN Nanocomposites의 열적특성과 전기적 특성을 측정하였다. 전기적특성으로 초절연성의 특성인 형상파라미터가 10.93을 그리고 척도파라미터는 176 kV/mm로서 Weibull Plot 누적확률밀도로서(63.2%)의 통계분석된 값을 얻었다. 또한 열적특성 평가를 위해 유리천이온도와 DMA의 온도특성를 조사하였고, 열적.전기적 특성과 나노콤포지트 내부분산(내부 모폴로지:TEM영상)와 연관되어 연구한 결과, 상당히 일치한 결과를 얻을 수 있었다.

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FRAPCON2을 사용한 DUPIC핵연료 거동 예측 : 열적분석

  • 김희문;박광헌;김기섭
    • Proceedings of the Korean Nuclear Society Conference
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    • 1997.05b
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    • pp.92-97
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    • 1997
  • 경수로용 전산코드인 ERAPCON2를 CANDU 핵연료의 거동에 사용하기 위하여 소결체-피복관틈새 열전도 모형과 소결체내 중성자속 분포 모형을 개조하였다. 기존의 CANDU핵연료 전산코드와 비교한 결과 CANDU핵연료의 열적거동 분석에 있어 거의 동일한 결과를 얻었다. 이를 사용하여 DUPIC 핵연료의 열적 거동특성을 알아보았다. 고용성 핵분열생성물에 의해 감소된 DUPIC 핵연료의 열전도도에 의하여 핵연료 중심부 온도가 증가됨을 알 수 있었다. 선출력 500W/cm에서 중심온도가 230-320K 정도 증가하였다. 따라서, DUPIC핵연료 설계에서 중심온도 증가에 대한 세밀한 분석이 요구된다.

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The Thermal and Mechanical Properties of Recycled PP/EVOH/PP Scrap with Compatibilizers (재활용 PP/EVOH/PP 스크랩의 상용화제별 열적/기계적 특성연구)

  • Chun, Yong-Jin;Ahn, Tae-Kwang
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.9 no.1
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    • pp.176-181
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    • 2008
  • This paper was studied the possibility on the recycling of the scrap used as the food packaging materials, PP/EVOH/PP multilayer. Recycling study was investigated into thermal and mechanical properties of samples which were mixed PP/EVOH waste plastics scrap with two kinds of compatibilizers. Melt behaviors as thermal property and tensile strength, % strain at break point, and tensile modulus as mechanical properties were investigated into kinds of and the weight ratio of compatibilizers. Mixed PP/EVOH waste plastics shows compatibity when Minanto-s and GMS as compatibilizers are mixed 0.5wt.% over.

Structural, Thermal and Mechanical Properties of Nano Composites according to Homogenizer and Power Ultrasonic (균질기와 초음파 동시 분산을 통한 나노콤포지트의 구조적, 열적, 기계적특성)

  • Yeom, Gyoo-Ho;Park, Kwang-Sik;Choe, Seong-Jo;Jeon, Sang-Hoon;Kwak, Young-Hoon;Park, Jae-Jun
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.82-82
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    • 2010
  • 에폭시메트릭스 내에서 초음파 및 균질기를 이용하여 층상실리케이트 마이크로 입자의 균질분산을 위하여 사용하였다. 초음파와 균질기를 동시에 사용하여 최적의 적용시간과 충진나노입자 충진함량과의 관계를 연구하기위하여 구조적 특성으로 X-RD, 열적특성으로 DSC, 열적 기계적 특성으로 DMA를 사용하여 특성을 평가하였다. 충진함량 변화에 대해서 층상실리케이트의 층간사이 간격의 변화는 반비례하는 특성을 나타내었고, 충진함량이 증가됨에따라 자체만으로는 크게 응집된 입자의 분산이 미약한 결과로 볼 수 있다. 그러나 Homogenizer와 동시에 분산할 때는 충진함량이 크게 증가하여도 균질한 분산이 이루어졌다.

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A Study on Thermal and Mechanical Interfacial Properties of Difunctional Epoxy/PMMA Blends (이관능성 에폭시/폴리메틸메타크릴레이트 블랜드의 열적 및 기계적 계면 특성)

  • 박수진;김기석;이재락;민병각;김영근
    • Composites Research
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    • v.17 no.1
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    • pp.10-17
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    • 2004
  • In this work, the blend system prepared from epoky(DGEBA)/polymethylmethacrylate(PMMA) was investigated in thermal and mechanical interfacial property measurements. The thermal properties were carried out by DSC, DMA, and TGA measurements. Also, the surface free energy and fracture toughness were determined by contact angle and critical stress intensity factor($K_{IC}$), respectively. And the fracture surface was observed by SEM after $K_{IC}$ tests. As experimental results, the curing temperature and glass transition temperature were slightly increased in addition of PMMA. Surface free energy of the blends showed an improved value at low contents of PMMA which could be attributed to the both increasings of London dispersive and polar components. From measurement of $K_{IC}$ of the blends, the highest value was found at 5 phr. This was due to the increasing of compatibility or physical interaction in macromolecular chains between DGEBA and PMMA of the blends.

Analysis of Thermal Interrelation by Leakage Current in Open and Closed Statues (개방 및 밀폐상태에서의 누설 전류에 대한 열적 상관관계 분석)

  • Kim, Doo-Hyun;Kim, Sung-Chul;Park, Jong-Young;Choi, Seung-Ho;Lee, Jong-Ho
    • Fire Science and Engineering
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    • v.24 no.6
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    • pp.7-12
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    • 2010
  • This paper is aimed the measurement and estimation the thermal interrelation based on leakage current. The leakage models are analyzed by parameters in open and closed (Panel) states and with wood dust and rainwater, charcoal powder in leakage current occurred point. The thermal characteristic of open state that leakage current is inputted in 90 mA is higher in charcoal powder ($105^{\circ}C$) than in wood dust and rainwater ($88.8^{\circ}C$). Charcoal powder that is inputted in 110 mA shows high thermal characteristic ($238.6^{\circ}C$) and the thermal ($238.6^{\circ}C$) is caused by material strain of electrical wire insulation and Panel. The closed state in 90 mA is higher in charcoal powder ($250.6^{\circ}C$) than in wood dust and rainwater ($90.8^{\circ}C$). The open and closed state appear thermal characteristics of two times in charcoal powder than in wood dust and rainwater. The thermal data that are open and close states are used electrical fire investigation and thermal characteristic for Leakage current.

A Study on Thermal Characteristics and Ignitability of Dead Leaves and Living Leaves for Main Species of Trees in Youngdong Areas (영동지역의 주요 수종별 낙엽과 생업의 열적특성 및 발화특성에 관한 연구)

  • Lee, Hae-Pyeong;Lee, Si-Young;Park, Young-Ju
    • Fire Science and Engineering
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    • v.23 no.1
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    • pp.21-32
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    • 2009
  • In order to inspect the danger of forest fires, the thermal characteristics and the ignitability of the dead leaves and the living leaves for the main species of trees in Youngdong areas have been studied by the TG/DTA and the group flammability tester. From this work, the thermal delay has been increased with the increase of the heating rate. The fractions of the thermal weight loss for the dead leaves and the living leaves of the coniferous trees were higher than those of the broadleaf trees. Also, it was confirmed that the ignitable dangers of the dead leaves and the coniferous trees were higher than those of the living leaves and the broadleaf trees, due to the low auto ignition temperature and thermal resistance.

Experimental Study on the Effect of Flow around Solid Combustibles and Thermal Thickness on Heat Release Rate Characteristics (고체 가연물 주위의 유동과 열적 두께의 변화가 열방출률 특성에 미치는 영향에 관한 실험적 연구)

  • Hong, Ter-Ki;Seo, Dong-Pyo;Park, Seul-Hyun
    • Fire Science and Engineering
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    • v.34 no.3
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    • pp.28-34
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    • 2020
  • In this study, an ISO 5660-1 cone calorimeter experiment was conducted to examine the effects of changes in flow and thermal thickness around solid combustibles on heat release rate characteristics. Polymethyl methacrylate (PMMA) is a solid combustible material that does not generate char during the combustion reaction. Hence, it was selected for the experiment, and the thermal penetration depth was calculated to distinguish the thermal thickness of PMMA. Furthermore, the thermal decomposition characteristics were analyzed by measuring the heat release rate measured during the combustion of PMMA. This was performed after generating the forced flow around the combustibles by setting the duct flow of the cone calorimeter to 12, 24, and 40 L/s. The results confirmed that the thermal release rate of the thermally thin combustible material was not significantly affected by the change in the surrounding flow. Hence, the thermally thick combustible material was significantly affected by the change in the flow rate.