• 제목/요약/키워드: Impregnated Oil

검색결과 53건 처리시간 0.04초

왁스와 오일 또는 흑연의 함침에 의한 나일론의 마찰특성 향상에 관한 연구 (A Study on the Improvement of Frictional Properties of Nylon Impregnated with Wax and Oil or Graphite)

  • 강석춘;정대원
    • 한국자동차공학회논문집
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    • 제10권6호
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    • pp.142-149
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    • 2002
  • The frictional properties of nylon can be improved by the impregnation of lubricants like wax, oil or graphite. The inclusion of these lubricants, on the other hand, decreases the mechanical properties of nylon, such as tensile strength, hardness and impact strength. As an attempt to maximize frictional properties, while minimizing a decrease in the mechanical properties, various kinds of nylon containing 3 wt% wax and varying contents of oil or graphite were prepared. It was found that the synergy effects to improve both friction and anti-wear properties is evidenced by impregnating a combination of wax/oil or wax/graphite. The wear rate of a nylon containing 3 wt% of wax and 1.5 wt% of oil turned out to be 1/4 of that of nylon impregnated with 8 wt% wax or 8 wt% oil. The latter showed the lowest wear rate among the nylons prepared with a single lubricant. In addition, the friction coefficient of the developed nylon was found to be very similar to the nylon with 8 wt% wax only.

Space Charge Behavior of Oil-Impregnated Paper Insulation Aging at AC-DC Combined Voltages

  • Li, Jian;Wang, Yan;Bao, Lianwei
    • Journal of Electrical Engineering and Technology
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    • 제9권2호
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    • pp.635-642
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    • 2014
  • The space charge behaviors of oil-paper insulation affect the stability and security of oil-filled converter transformers of traditional and new energies. This paper presents the results of the electrical aging of oil-impregnated paper under AC-DC combined voltages by the pulsed electro-acoustic technique. Data mining and feature extractions were performed on the influence of electrical aging on charge dynamics based on the experiment results in the first stage. Characteristic parameters such as total charge injection and apparent charge mobility were calculated. The influences of electrical aging on the trap energy distribution of an oil-paper insulation system were analyzed and discussed. Longer electrical aging time would increase the depth and energy density of charge trap, which decelerates the apparent charge mobility and increases the probability of hot electron formation. This mechanism would accelerate damage to the cellulose and the formation of discharge channels, enhance the acceleration of the electric field distortion, and shorten insulation lifetime under AC-DC combined voltages.

윤활액이 담지된 나노다공성 표면의 최신 응용분야 (Recent applications of lubricant-impregnated nanoporous surface : A Review)

  • 한경완;배기창;이정훈
    • 한국표면공학회지
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    • 제56권1호
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    • pp.1-11
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    • 2023
  • Lubricant-impregnated nanoporous surfaces (LIS), which is created by impregnating water-immiscible oil into nanoporous surface structure, have been explored considering wide range of application fields. Due to the lubricant impregnated in nanoporous structure, the surface shows extreme de-wetting with a high mobility of water droplets, so that various functionalities can be realized. The lubricant layer inhibits the contact of corrosive media to porous structure as well as metal substrate, thus the surface improves the corrosion resistance. The water on the surface freeze without any contact to solid porous structure, showing a low ice adhesion for de-icing an anti-icing. The extremely high mobility of water droplets on lubricant-impregnated porous surfaces also contributes the enhancement of condensation heat transfer as well as water harvesting from fog and moisture. Moreover, the bacteria adhesion on metal surface forming biofilms causing serious hygiene issues can be inhibited on the lubricantimpregnated surfaces. Despite of such superior functionalities, the lubricant-impregnated porous surface has a limitation of lubricant depletion by external flow of fluids. Therefore, extensive efforts to improve the durability of lubricant-impregnated surface are required for practical applications.

회복전압측정 방법을 통한 식물유와 광유에 따른 절연지의 수분 흡습 특성 (A moisture absorption characteristics of insulation papers on the vegetable oil impregnated paper and the mineral oil impregnated paper)

  • 정진혜;한상옥;이세현;박강식
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2008년도 제39회 하계학술대회
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    • pp.2034-2035
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    • 2008
  • 본 논문은 RVM(Return Voltage measurement)을 이용하여 식물유와 광유에 따른 절연지의 수분 흡습성에 관한 특성을 비교하였다. 시험 절연재료로써 절연유는 각각 식물유(Bio Trans 1000,Cargill사)와 광유(제1종 2호, 동남석유(주))를 사용하였고, 절연지는 셀룰로오스계 크래프트 절연지를 사용하였다. 각 조건에서 IEEE/ANSI Standard C59.91-1981의 기대수명 곡선에서 $55^{\circ}C$ 절연을 기준으로하여 가속 열열화 시험을 수행한 후, $15^{\circ}C$씩 온도를 변화시켜 RVM 측정을 하였다.

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OF 케이블 절연유의 환경친화적 자재 적용 (Biodegredible material application of insulation oil of OF CABLE)

  • 김종원;이기수;하재청;최봉남;이승열
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 C
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    • pp.2023-2025
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    • 2000
  • Globally, movements for an environmental preservation have been further extended in all the areas of industries. In the manufacturing area. environment-friendly properties for all the manufactured products are increasingly required by many national standards. For EHV oil-filled cables. Hard Alkylbenzen has been applied as an impregnated insulating oil. But as it flows into the soil during failures, such as oil leakage, the oil is not dissolved by microbes and then causes an environmental pollution. Recently some countries are increasingly requiring Soft Alkylbenzen which is dissolved by microbes. This paper describes the electrical and environmental properties of Soft Alkylbenzen. applied for a 230kV oil-filled cables at a Singapore's project.

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HVDC 절연유 중에서 Silicone Rubber의 팽윤특성 분석 (The Analysis of HVDC Cable Oil Swelling Characteristics on the Silicone Rubber)

  • 이태호;김남열;김정년;전승익
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 제38회 하계학술대회
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    • pp.623-624
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    • 2007
  • This work examines the effects of swelling MI type HVDC cable oil on the semiconductive silicone rubber and silicone rubber as used in accessories for application on outdoor termination (EBA) slip on sleeve. The behavior of volume resistivity is monitored as a function of the amount of cable oil diffused into the material. Resistivities of semiconductive silicone samples up to the typical insulator range (${\sim}10^{10}{\Omega}-cm$) are observed as a consequence of swelling due to the presence of the diffused oil. The measured volume resistivities of the oil-impregnated semiconductive silicone rubber are compared to desired value as function of stress relief cone.

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가다랭이 안와조직으로부터 DHA의 추출 및 정제 (Isolation and Purification of DHA from Skipjack Orbital Tissue Oil)

  • 정보영
    • 한국수산과학회지
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    • 제26권6호
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    • pp.529-537
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    • 1993
  • 가다랭이 안와유로부터 docosahexaenoic acid(DHA)를 정제하기 위해 기존의 방법들을 적용하여 비교 검토하고, DHA의 효과적인 정제를 위해 조작방법을 개량하였다. 가다랭이 안와조직의 총지질은 $55.4\%$였으며, 이 중 DHA는 $23.7\%$였다. 저온분별결정법과 요소결정법을 적용한 결과 순도에서 각각 약 $46\%$$61\%$의 DHA가 얻어졌다. 이들 방법들은 순도면에서는 다소 떨어지나, 정제조작이 단순하여 다량의 DHA 분리에 적합하였다. 질산은 수용액법은 상기 2가지 방법에 비하여 순도면에서는 약간 개선되었으나, 회수율이 대단히 낮았다($10\%$ 이하). 질산은 함침 실리카 칼럼 크로마토그래피법은 고순도 DHA의 정제방법으로써 적합하였다(순도 $98\%$ 이상, 회수율 $90\%$ 이상). 결과적으로 저온분별결정법과 질산은 함침 실리카 칼럼 크로마토그래피법을 조합한 개량법(2단계 정제법)이 가다랭이 안와유로부터 고순도 DHA($99.9\%$)의 정제를 위한 가장 효과적인 방법으로 평가되었다.

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구리 나노 입자가 함침된 PTFE의 윤활 마모 거동 (Tribological Wear Behavior of PTFE Impregnated with Cu Nano Particles)

  • 김시영;김은봉;콴유;주창식
    • 동력기계공학회지
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    • 제14권4호
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    • pp.50-55
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    • 2010
  • In order to investigate tribological effects of nano copper particles impregnated(CuN) on surface polytetrafluoroethylene(PTFE) on sealing wear and an experimental study was carried out to determine the wear behavior of copper nano-particles impregnation two kind thickness in super critical $CO_2$ liquid. Experimental results showed that the friction coefficients of CuN PTFE at the low sliding speed(0.44m/s) and the oil temperature ($60^{\circ}C$) were higher than that of virgin PTFE. And a thin nano copper particles impreganated thickness was formed on the surface in the PTFE and the specimen with this treatment has much better friction properties than the original one. Fortunately, at the high load(80 N) and the oil temperature, the friction coefficient of CuN PTFE was lower than that of virgin PTFE. This evidenced the load carrying capacity of CuN PTFE was much better than that of virgin PTFE under the high load condition(80 N) specially. Therefore, it can be concluded that the friction coefficient variation of CuN PTFE is very small but its wear rate decreases greatly with increase in sliding speed.

HVDC 500kV PPLP MI 케이블시스템 개발 (Development of HVDC 500kV PPLP MI cable systems in Korea)

  • 이수봉;조동식;김성윤;이태호;이수길;전승익
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2015년도 제46회 하계학술대회
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    • pp.1202-1203
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    • 2015
  • This paper describes the development of HVDC ${\pm}500kV$ polypropylene laminated paper (PPLP) mass-impregnated (MI) type cable system for HVDC transmission lines. As you know, mass-impregnated type cable generally has only insulating layer with the Kraft paper impregnated with a high-viscosity insulating compound. But polypropylene laminated paper is made of a layer of extruded polypropylene (PP) film sandwiched between two layers of Kraft paper. Thanks to PP film and its combination with Kraft paper, PPLP has higher AC, Impulse (Imp.) and DC breakdown (BD) strengths as well as lower dielectric loss than conventional Kraft paper insulation. In addition, Kraft MI cable has a limitation for the maximum conductor temperature as $55^{\circ}C$ But this PPLP MI cable has higher maximum conductor temperature than that of Kraft MI cable due to advantage of oil drainage characteristics. It is the most economic type of cable for HVDC transmission. Also HVDC ${\pm}500kV$ PPLP MI cable system was developed including land joints and outdoor-terminations. In order to prove the mechanical and electrical performances, the type test was carried out according to CIGRE recommendations. A full scale cable system has been tested successfully. And additional load cycle and polarity reversal tests on the cable system showed a higher performance compared with a similar mass impregnated paper cable.

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Mg/Al Impregnated Biochar for the Removal and Recovery of Phosphates and Nitrate

  • Kim, Dong-Jin
    • 한국환경과학회:학술대회논문집
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    • 한국환경과학회 2019년도 정기학술대회 발표논문집
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    • pp.134-134
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    • 2019
  • Utilization of organic waste as a renewable energy source is promising for sustainability and mitigation of climate change. Pyrolysis converts organic waste to gas, oil, and biochar by incomplete biomass combustion. Biochar is widely used as a soil conditioner and adsorbent. Biochar adsorbs/desorbs metals and ions depending on the soil environment and condition to act as a nutrient buffer in soils. Biochar is also regarded as a carbon storage by fixation of organic carbon. Phosphorus (P) and nitrogen (N) are strictly controlled in many wastewater treatment plants because it causes eutrophication in water bodies. P and N is removed by biological and chemical methods in wastewater treatment plants and transferred to sludge for disposal. On the other hand, P is an irreplaceable essential element for all living organisms and its resource (phosphate rock) is estimated about 100 years of economical mining. Therefore, P and N recovery from waste and wastewater is a critical issue for sustainable human society. For the purpose, intensive researches have been carried out to remove and recover P and N from waste and wastewater. Previous studies have shown that biochars can adsorb and desorbed phosphates implying that biochars could be a complementary fertilizer. However, most of the conventional biochar have limited capacity to adsorb phosphates and nitrate. Recent studies have focused on biochar impregnated with metal salts to improve phosphates and nitrate adsorption by synthesizing biochars with novel structures and surface properties. Metal salts and metal oxides have been used for the surface modification of biochars. If P removal is the only concern, P adsorption kinetics and capacity are the only important factors. If both of P and N removal and the application of recovery are concerned, however, P and N desorption characteristics and bioavailability are also critical factors to be considered. Most of the researches on impregnated biochars have focused on P removal efficiency and kinetics. In this study, coffee waste is thermally treated to produce biochar and it was impregnated with Mg/Al to enhance phosphates and nitrate adsorption/desorption and P bioavailability to increase its value as a fertilizer. Kinetics of phosphates and nitrate adsorption/desorption and bioavailability analysis were carried out to estimate its potential as a P and N removal adsorbent in wasewater and a fertilizer in soil.

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