• 제목/요약/키워드: Automotive Engine Oil

검색결과 258건 처리시간 0.022초

수소 혼소 디젤 기관의 성능 및 미립자상 물질의 배출 특성에 관한 연구 (A Study on the Performance and Particulate Emission Characteristics for the Hydrogen-Premixed Diesel Engine)

  • 채재우;한동성;이상만;전영남;정영식
    • 한국자동차공학회논문집
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    • 제1권2호
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    • pp.34-41
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    • 1993
  • In order to reduce harmful substances such as particulates and nitric oxides emitted from diesel engine, man kinds of methodology like high pressure spray of diesel fuel oil, exhaust gas recirculation, emulsified fuel usage and dual fuelling have been studied. Dual fuelling of a diesel engine with hydrogen which is well-known as the clean fuel and has excellent combustibility is expected to be effective in reducing harmful substances from diesel engine. This experimental study was conducted to investigate the effect of premixed hydrogen with intake air on the performance and particulate emission characteristics using a single cylinder, prechamber type diesel engine. As a result, it was clarified that a hydrogen-premixed diesel engine can be operated in the state of lower particulate emission and slightly aggravated fuel economy, compared with the conventional diesel engine.

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대형 2행정 디젤기관의 모터구동 주유기 유량 및 송출 특성에 미치는 실린더 배압의 영향에 관한 연구 (A Study on Effect of Cylinder Back Pressure on Feed Rate and Delivery Characteristics of Motor-driven Lubricator in a Large Two-stroke Diesel Engine)

  • 배명환;정화;옥현진
    • 한국자동차공학회논문집
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    • 제13권5호
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    • pp.19-28
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    • 2005
  • It is of great economic importance to minimize the cylinder wear and the consumption rate of cylinder oil in a large two-stroke diesel engine. The motor-driven cylinder lubricator was first developed fur a large two-stroke marine diesel engine made in $W{\ddot{a}}rtsil{\ddot{a}}a$ Switzerland Ltd. by the joint research of industry-university. In this study, the effects of revolution speed, plunger stroke and cylinder back pressure on maximum discharge and delivery pressures, delivery delay duration, and oil feed rate are experimentally investigated by the home-manufactured cylinder lubricator. The maximum discharge pressure with a spot of 0.03 m and the maximum loss pressure at spots of 5, 6.78 and i 0 m away from the end of lubricator slot are increased as plunger stroke, revolution speed and back pressure are elevated, and the delivery delay duration is shortened as plunger stroke, revolution speed and oil pipe length are increased. Also, oil feed rate is increased as plunger stroke and revolution speed are raised, but lowered as the back pressure is increased.

필드조건, 엔진오일의 종류에 따른 오일성능 분석 (Analysis of Oil Performance by Different Type of Engine Oil In the Field)

  • 김영환;송준희;김한주
    • 에너지공학
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    • 제26권3호
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    • pp.131-136
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    • 2017
  • 자동차 엔진오일은 엔진 시동 시 가장 중요한 윤활제이다. 최근 자동차 회사 와 윤활유 제조업체들은 교환주기를 연장하기 위해 첨가제를 사용하여 오일의 품질을 상당히 개선하고 있다. 대부분의 고객은 자동차 제작사의 정품오일을 사용하거나 전문가의 추천을 받아 사용한다. 본 논문을 통해 소비자가 고효율 윤활유를 선택하는 또 다른 기준점을 제안한다. 본 논문은 7개월 동안 실제 자동차의 운전 조건을 고려하여 오일의 6가지 화합물을 조사 비교 분석하였다. 물리적, 화학적 관점에서 실험을 수행했다. 현장에서 다양한 실험을 통해 광유와 합성유 화합물은 산화, 점도, 유동성 및 TBN에서 크게 구분된다. 이들은 엔진 부품 피스톤, 베어링 등의 마모에 영향을 준다. 다양한 오일을 비교하였을 때 인화점, 산화 안정성에서 합성유의 성능이 좋고 오염 물질인 Fe와 Al 화합물의 변화가 적은 것으로 나타났다. 오일의 첨가제는 광유와 합성유에서 청정분산제 Ca가 확연한 차이를 나타냈다. 극압제 Zn과 윤활 향상제 P는 유사하였다.

디젤기관의 대체연료로서 미장유의 특성 연구(II) (A Study on Characteristics of Rice Bran Oil as an Alternative Fuel in Diesel Engine(II))

  • 최승훈;오영택
    • 한국자동차공학회논문집
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    • 제10권3호
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    • pp.8-17
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    • 2002
  • In this study, it was tried to analyze not only total hydrocarbon but individual hydrocarbon components from C$_1$to C$\sub$6/ in exhaust gas using gas chromatography to seek the reason fur remarkable differences of smoke emission of diesel fuel, esterfied rice bran oil and blended fuel(esterfied rice bran oil 20vo1-% + diesel fuel 80vo1-%). Individual hydrocarbons(C$_1$ ∼C$\sub$6/) as well as total hydrocarbon of esterfied rice bran oil is reduced remarkably compared with diesel fuel. Although smoke emission of esterfied rice bran oil reduced remarkably compared with commercial diesel fuel, NOx emission of esterfied rice bran oil and blended fuel was increased slightly at high loads and speeds. And, it was tried to reduced NOx emission of them by exhaust gas recirculation(EGR) method. Simultaneous reduction of smoke and NOx emission was achieved with the combination of esterfied rice bran oil and EGR method in consequence.

피스톤링의 회전운동이 오일소모에 미치는 영향-제2보: 링갭의 위상각과 오일소모와 의 관계- (Effect of rotational motion of piston ring on the oil consumption -2'nd report: Relationship between phase angle of ring end gap and oil consumption)

  • 민병순;김중수;오대윤;최재권;진준하
    • 한국자동차공학회논문집
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    • 제7권5호
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    • pp.81-88
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    • 1999
  • In order to understand the relationship between the phase angle of piston ring and oil consumption was measured by analyzing $CO_2$concentration in exhaust gas. The use of hydrogen fuel not gasoline makes this possible because all of the carbon component in exhaust gas can be assumed to be produced from oil. As a result of experiment, it is known that the oil consumption varies periodically and a specific location of ring end gap was found at each peak of oil consumption. Therefore, it was found that the oil consumption was not constant even at the same operating conditions and this is because the relative locations of top and 2'nd ring end gap change arbitrarily.

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Surface Roughness Effects on the Lubrication Characteristics of the Engine Piston Ring Pack

  • Yun, Jeong-Eui
    • KSTLE International Journal
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    • 제1권2호
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    • pp.83-90
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    • 2000
  • The surface roughness between a piston ring pack and a cylinder liner directly affects the fuel economy, the oil consumption, and the emission of the engine so that it is very important to clarify the surface roughness effects on the lubrication characteristics. The friction characteristics of the piston ring during engine operations are known to as mixed lubrication experimentally. In this study to simulate the effects of the surface roughness of the piston ring pack on the lubrication characteristics, the mixed lubrication analysis of piston rings was performed using the simplified average Reynolds equation. From the results the surface roughness was found be considerably affects minimum oil film thickness as well as FMEP(Friction Mean Effective Pressure). Especially, the oil ring was the most sensitive on the surface roughness.

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자동차 윤활기유의 비마모량에 관한 실험적 연구 (An Experimental Study on the Specific Wear Amount of Base oil in Automotive Lubricant)

  • 전찬열
    • 한국산학기술학회논문지
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    • 제10권3호
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    • pp.488-492
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    • 2009
  • 본 논문은 자동차의 엔진오일에 사용되는 여러 윤활기유에 대하여 비마모 특성을 실험적 연구에 의해 분석하였다. 비마모량 점도와 온도 등과 같은 여러 가지 속도 조건 하에서의 마찰력과 측정된 수직하증으로부터 계산되었다. 엔진오일에 사용되는 기유는 여러 가지 작동 상태에 따라 마찰 특성의 관계가 확인되었다.

축소 노멀 도데케인 화학반응 메커니즘 개발 (Development of Reduced Normal Dodecane Chemical Kinetics)

  • 이상열;김규진;민경덕
    • 한국자동차공학회논문집
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    • 제21권2호
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    • pp.37-44
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    • 2013
  • Generally, a reduced chemical mechanism of n-heptane is used as chemical fuel of a 3-D diesel engine simulation because diesel fuel consists of hundreds of chemical components and various chemical classes so that it is very complex and large to use for the calculation. However, the importance of fuel in a 3-D simulation increases because detailed fuel characteristics are the key factor in the recent engine research such as homogeneous charged compression ignition engine. In this study, normal paraffin, iso paraffin and aromatics were selected to represent diesel characteristics and n-dodecane was used as a representative normal paraffin to describe the heavy molecular weight of diesel oil (C10~C20). Reduced kinetics of iso-octane and toluene which are representative species of iso paraffin and aromatics respectively were developed in the previous study. Some species were selected based on the sensitivity analysis and a mechanism was developed based on the general oxidation scheme. The ignition delay times, maximum pressure and temperature of the new reduced n-dodecane chemical mechanisms were well matched to the detailed mechanism data.

가솔린엔진윤활의 제문제와 엔진유에 요구되는 성능 (The problems of gasoline engine lubrication and required performance of engine oil)

  • 권영길
    • 오토저널
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    • 제4권3호
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    • pp.1-9
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    • 1982
  • 자동차에서 윤활을 필요로 하는 부분으로서는 엔진과, 차체 그리고 변속 및 주형장치로 대별되며 엔진만의 윤활을 위해서는 엔진유가 필요하고 차체나 변속 주형장치는 그리이스 및 기어유가 사용된다. 특히 자동차윤활에서 가장 가혹한 조건으로 윤활되고 또한윤활문제로 고심하는 엔진 윤활은 엔진의 구조나 윤활방식 또는 사용연료등엥 따라 윤활상태가 크게 달라질 수도 있으나 윤활이 기본원리와 목적은 대동소이하다. 자동차엔진, 특히 가솔린엔진에서 윤활을 필요로 하는 부분은 베어링, 실린더 및 캠부분등으로 나눌 수가 있으며 이런 부분의 윤활은 극히 가혹한 상태에 놓이게 된다. 따라서 이와 같은 문제들을 고려하면서 가솔린엔진윤활의 제문제점과 엔 진유에 요구되는 성능에 대하여 고찰하여 보고자 한다.

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피스턴마찰에 미치는 각 인자의 영향 (The influence of various factors on piston friction)

  • 이종태;이성열
    • 오토저널
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    • 제5권1호
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    • pp.45-53
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    • 1983
  • There exist many kinds of frictions in internal combustion engine such as piston ring and skirt, cam and tappet, bearing friction etc. Among them, the frictions between piston ring, skirt and cylinder are particular. These frictions for motoring test are differ from that of firing test even though the temperature of cooling water and lubricating oil keep identically. The frictions for firing test are increased due to combustion pressure and products. The precise calculation of the friction is difficult. But we can assume that the friction is governed by the viscosity of lubricating oil and gas pressure of cylinder. And the viscosity of lubricating oil is dependant on gas temperature of cylinder, so the piston friction may be governed by gas pressure and temperature of cylinder. In this treatise, we propose the method of evaluating piston friction under the condition of constant engine speed, and we analyzed the behaviours and influence of factors concerned with the piston friction for output correction when the inlet pressure and temperature were varied. The main results are as follows: 1) The behaviours on the inlet conditions for the contact force of the piston rings and the viscosity of the lubricating oil concerned with piston friction are found. 2) The essential point the these behaviours is dependant on the cyclic variation following to the inlet conditions. 3) According to our analysis, It was observed that the viscosity of lubricating oil is more effective than the contact force to the piston rings.

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