• Title/Summary/Keyword: Volume resistivity properties

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The Volume Resistivity Characteristics of Linear Low Density Polyethylene/Ethylene Vinyl Acetate Blend Film (선형 저밀도 폴리에틸렌/에틸렌 비닐아세테이트 블렌드 박막의 체적고유저항 특성)

  • 이태훈;신종열;오세영;이충호;이용우;홍진웅
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1998.11a
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    • pp.195-198
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    • 1998
  • In this paper, the physical and the volume resistivity properties due to linear low density polyethylene(LLDPE)/ethylene vinyl acetate(EVA) blends are studied. In order to measure the volume resistivity properties. the micro electrometer is used, the range of temperature and applying voltage are 25 to 120[$^{\circ}C$], form 100 to 1000[V] respectively. From FT-IR spectrum, LLDPE blended with EVA shows an absence of carbonyl and ether groups. From the experimental result of the volume resistivity properties, it is confirmed that the volume resistivity is decreased, which was attributed to the increase of molecular motions with the increase of temperature.

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The Characteristics of Volume Resistivity for the Transformer Oil irradiated with the Electron Beam of Low Dose (저조사량 전자선에 대한 변압기유의 체적고유저항 특성)

  • 이용우;이우영;조돈찬;김왕곤;홍진웅
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1996.05a
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    • pp.211-215
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    • 1996
  • In this paper, the volume resistivity of transformer oil is made researches so that the electrical properties for transformer oil is investigated. The specimen is produced by the irradiation of electron beam classified into the low dose, such as 0.5[Mrad], 1[Mrad], 2[Mrad]. The effect of electron team irradiation is studied by investigating the electrical properties of dielectric liquid due to the difference of electron beam dose. To measure the physical properties of transformer oil, courier Transform-Infrared Spectroscopy is investigated. And the study far the electrical properties is made by measuring the volume resistivity of each specimen. By means of the result from this experiments, it is introduced that the movement of carrier to contribute to the volume resistivity on the electrical properties.

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PTC/NTC Properties of EEA/Carbon nanotube and Carbon Black Composites (EEA/탄소나노튜브와 카본블랙 복합체의 PTC/NTC특성)

  • Yang, Jong-Seok;Lee, Kyoung-Yong;Choi, Sung-Hun;Lee, Jae-Hyeoung;Park, Dae-Hee
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2006.06a
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    • pp.236-237
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    • 2006
  • We have investigated volume resistivity showed by changing the content of Carbon nanotube and carbon black which is the component parts of semiconducting shield in underground power transmission cable. Specimens were made of sheet form with the six of specimens for measurement. Volume resistivity of specimens was measured by volume resistivity meter after 10 minutes in the preheated oven of both $23{\pm}1[^{\circ}C]$ and $90{\pm}1[^{\circ}C]$. The volume resistivity decreased by adding Carbon nanotube and carbon black. Also the volume resistivity had different properties because of PTC/NTC tendencies at between $23[^{\circ}C]$ and $90[^{\circ}C]$. We experimented with electric properties of semiconducting components with fewer Carbon nanotube than carbon black.

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Electrical and Mechanical Properties of Semiconducting Shield for Power Cable by Carbon Nanotube Content (탄소나노튜브(CNT) 함량에 따른 전력케이블용 반도전 재료(층)의 전기적/기계적 특성 연구)

  • Yang Jong-Seok;Lee Kyoung-Yang;Shin Dong-Hoon;Park Dae-Hee
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.55 no.8
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    • pp.381-386
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    • 2006
  • In this study, we have investigated electrical and mechanical properties of semiconducting materials for power cable caused by CNT. Specimens were made of sheet form with the four of specimens for measurement. Volume resistivity of specimens was measured by volume resistivity meter after 10 minutes in the pre-heated oven of both $23{\pm}\;1\;[^{\circ}C]\;and\;90{\pm}\;1\;[^{\circ}C]$. And stress-strain of specimens was measured by TENSOMETER 2000. A speed of measurement was 200[mm/min], ranges of stress and strain were 400[Kgf/Cm2] and 600[%]. From this experimental results, the volume resistivity had different properties because of PTC/NTC tendency at between $23[^{\circ}C]\;and\;90[^{\circ}C]$. Also volume resistivity was low by increasing the content of CNT. It means that a small amount of CNT has a excellent electrical properties. And stress was increased, while strain was decreased by increasing the content of CNT. Thus, we could know that a small amount of CNT has a excellent electrical and mechanical oroperties.

Volume Resistivity, Specific Heat and Thermal Conductive Properties of the Semiconductive Shield in Power Cables

  • Lee Kyoung-Yong;Choi Yong-Sung;Park Dae-Hee
    • KIEE International Transactions on Electrophysics and Applications
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    • v.5C no.3
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    • pp.89-96
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    • 2005
  • To improve the mean-life and reliability of power cables, we have investigated the volume resistivity and thermal properties demonstrated by changing the content of carbon black, an additive of the semiconductive shield for underground power transmission. Nine specimens were made of sheet form for measurement. Volume resistivity of the specimens was measured by a volume resistivity meter after 10 minutes in a preheated oven at temperatures of both 25$\pm$1[$^{\circ}C$] and 90$\pm$ 1[$^{\circ}C$]. As well, specific heat (Cp) and thermal conductivity were measured by Nano Flash Diffusivity and DSC (Differential Scanning Calorimetry). The ranges of measurement temperature were from 0[$^{\circ}C$] to 200[$^{\circ}C$], and heating temperature was 4[$^{\circ}C$/min]. From these experimental results, volume resistivity was high according to an increase of the content of carbon black. Specific heat was decreased, while thermal conductivity was increased according to a rise in the content of carbon black. Furthermore, both specific heat and thermal conductivity were increased by heating temperature because the volume of materials was expanded according to a rise in temperature.

Volume Resistivity Characteristics of Transformer Oils Contained BTA (BTA가 참가된 변압기유의 체적고유저항특성)

  • 이용우;송병기;김기택;김석환;김왕곤;홍진웅
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1997.04a
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    • pp.257-260
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    • 1997
  • In order to investigate the volume resistivity on the electrical properties of transformer oils, the Transformer oils contained BTA is prepared, which was classified by the contents of BTA, such as 1[ppm], 10[ppm], 20[ppm], 30[ppm], 50[ppm], respectively. To measure the physical properties of transformer oils contained BTA, Fourier Transform Infrared Spectroscopy is investigated. And for the study of electrical properties is made by measuring the volume resistivity of each specimen. As result of this experiments, it is confirmed that the volume resistivity characteristics of specimen contained BTA 10[ppm] is superior.

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Effect of Nano Filler on the Electrical Properties of Epoxy Composite (에폭시 복합재료의 전기적 특성에 미치는 나노 충진제의 영향)

  • Kim, Joung-Sik;Choi, Hyun-Min;Park, Hee-Doo;Ryu, Boo-Hyung;Hong, Jin-Woong
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.46-46
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    • 2010
  • In this paper, we studied the volume resistivity and the electrical conductivity properties of nano composites to investigate the electrical properties of epoxy composites added nano MgO. The specimens were produced by classifying to 1.0, 3.0, 5.0, 10[wt%] and virgin specimen according to the addition amount of MgO. We measured the volume resistivity of nano filler using the High Resistance Meter(4329A) at the measuring temperature changed to 25, 50, 80, 100, and [$120^{\circ}C$]. As the result, it is confirmed that the volume resistivity was the highest stability and volume resistivity value is $2.6{\times}10^{17}\;[\Omega{\cdot}cm]$ at 3.0[wt%]. And it is confirmed that the electrical conductivity property is sharply increased at low electric filed region and the conductivity current density is rapidly increased at high electric filed region.

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Electrical Properties of Transformer Oils (III) (변압기유의 전기적인 특성 (III))

  • 이용우;조돈찬;신성권;이재호;김왕곤;홍진웅
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1995.11a
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    • pp.293-297
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    • 1995
  • In order to investigate the electrical properties of Transformer Oils, Volume Resistivity for transformer oils was made researches. in this paper, the specimen was produced by irradiation of electron beam, which is divided by the dose, 12[Mrad], 24[Mrad], 36[Mrad]. By investigating the electrical properties of dielectric liquid due to the difference of electron beam irradiation the effect of electron beam irradiation was studied. To measure the physcial properties of transformer Oils, Fourier transfer infrared spectroscopy was investigated. And the study for the electrical properties of dielectric liquid was made by measuring volume resistivity of specimen. the Electrode for the measuring Volume resistivity is formed coaxial cylindrical shape, and its geometric capacitance is confirmed to 16[pF]. In this experiments, Highmegohm meter which is model VMG-1000, was used for the measuring volume resistivity. the applying voltages were DC 100, 250, 500, 1000[V] in the temperature range of 20∼120[$^{\circ}C$]. By means of the result from this experiment the movement of carrier and the physcial constants to contribute dielectric properties is introduced.

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Volume Resistivity Properties of Cross-linked Polyethylene for Ultra-high Voltage Cable (초고압 케이블용 가교폴리에틸렌의 체적고유저항특성)

  • JEONG, J.;KIM, W.J.;LEE, K.W.;LEE, S.W.;PARK, H.Y.;KIM, W.K.;HONG, J.W.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2002.07a
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    • pp.455-458
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    • 2002
  • In this paper, the physical and volume resistivity properties of cross-linked polyethylene (XLPE) for ultra-high voltage investigated due to temperature dependence, and the measurement of volume resistivity used to highmegohm meter is measured from 1 to 30 minutes when the each applied voltage, for example, DC 100[V], 250[V], 500[V] and 1000[V] is applied, according to the step voltage application method. From FT-IR spectrum as an analysis of physical properties, a strong absorption in wavenumbers 700 to 730[$cm^{-1}$ /], 1456[$cm^{-1}$ /] and 2700 to 3000 [$cm^{-1}$ /] observed by the methyl groups(CH$_2$). From the analysis of DSC, the crystalline melting points of the specimen observed in the temperature 60[$^{\circ}C$] and 106.58[$^{\circ}C$].

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A Study on the Electrical Properties of Transformer Oils for Large Power (대용량 변압기유의 전기적특성에 관한 연구)

  • 이용우;김왕곤;홍진웅
    • Journal of the Korean Society of Safety
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    • v.11 no.3
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    • pp.81-88
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    • 1996
  • In order to investigate the electrical properties of transformer oils for large power, the characteristics of AC and Impulse breakdown in gap length of 1.0~2.5mm and that of volume resistivity were researched in temperature range of 20~$100^{\circ}C$. An geometrical capacitance of electrode with coaxial cylindrical shape for measuring the volume resistivity was 16pF, and highmegohm meter with model no. VMG-1000 was used, and also the applied voltage were DC 100, 250 and 500V. In the dependance of breakdown characteristics due to electrode gap length, it was confirmed that breakdown voltage was nearly uniform by volume effect according to the increase of gap. In the characteristics for AC breakdown, the dielectric strength was increased to $90^{\circ}C$ but decreased over $90^{\circ}C$, and also in case of impulse breakdown, it was increased to 7$0^{\circ}C$ and at dated $70^{\circ}C$ over in temperature range. The calculated mobility of oils in the characteristics for impulse breakdown were about $10^{-5}$~$10^{-4}cm^2/V{\cdot}S$, and the value of volume resistivity was almost invariable in low temperature range, regardless of voltage by the stable thermal properties, and it indicated a peak at $50^{\circ}C$ and had a sudden change to decrease over that temperature, and also the value of volume resistivity in 250V/mm at $80^{\circ}C$ is suitable for the International electrical standards, it was confirmed.

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