• 제목/요약/키워드: top ring groove temperature

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엔진 오일 열화와 피스톤 톱링 그루브 온도가 카본 디포짓 형성에 미치는 영향 Part II-디젤 엔진의 디포짓 형성 특성 (The Effect of Engine Oil Degradation and Piston Top Ring Groove Temperature on Carbon Deposit Formation Part II - The Deposit Formation Characteristics of Diesel Engine)

  • 김중수;민병순;오대윤;최재권
    • Tribology and Lubricants
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    • 제14권4호
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    • pp.108-113
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    • 1998
  • In order to investigate the characteristics of top ring groove deposit formation in diesel engine, engine test and simulation test were performed. From component analysis of used oils sampled from actual running engines, soot content in engine oil was selected as a main parameter for evaluating oil degradation. Deposit formation is highly related to soot content in lubricating oils. And high soot content oil accelerates deposit formation even in low temperature region below 26$0^{\circ}C$. In low temperature region below 26$0^{\circ}C$, deposit formation rate is mainly affected by top ring groove temperature. However, in high temperature region above 26$0^{\circ}C$, deposit formation rate is affected by soot content as well as top ring groove temperature. Therefore, soot content as well as top ring groove temperature should be kept a certain level in order to prevent troubles due to carbon deposit formation.

방사성 추적자를 이용한 피스톤의 비정상 온도 특성에 관한 연구 -피스톤 링 갭 위치와 블로우 바이 가스의 영향- (The Investigations of the Characteristics of Unsteady Piston Temperature Using Radiotracers-The Effect of Piston Ring Gap Position and Blow By Gas)

  • 김중수;김승일;민병순;박승일;오대윤;정성희;진준하
    • 한국자동차공학회논문집
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    • 제8권4호
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    • pp.1-9
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    • 2000
  • To understand the thermal characteristics around the piston ring gap ring gap positions and piston temperatures are measured simultaneously. The locations of piston ring gap are measured by the radio-tracer method and piston temperature are measured by a K-type thermocouple and scissors type linkage system. From these experiments following facts are clarified. Piston temperatures fluctuate according to the piston ring rotation. And the temperature fluctuation is mainly affected by top ring gap position irrelevant to the second ring fop position. If the top ring gap position increases and the temperature of top ring groove shows maximum value when top rin gap position coincide with temperature measuring point. The maximum amplitude of temperature fluctuation which is proportional to the blow by gas rate is around 12-15$^{\circ}C$.

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엔진 오일 열화와 피스톤 온도가 카본 디포짓 형성에 미치는 영향 Part I-가솔린 엔진의 디포짓 형성 특성 (The Effect of Gasoline Engine Oil Degradation and Piston Temperature on Carbon Deposit Formation; Part I-Characteristics of deposit formation on gasoline engine)

  • 김중수;민병순;이두순;오대윤;최재권
    • Tribology and Lubricants
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    • 제13권4호
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    • pp.33-39
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    • 1997
  • In order to establish a new temperature criterion to prevent the pistons from ring sticking due to deposit formation, bench test and engine test were performed. The effects of oil degradation and temperature on deposit formation was studied by a modified panel coking test. Oil degradation was analyzed by FTIR. Oil oxidation and nitration were selected as a factors to evaluate oil degradation. Bench test results show that oil oxidation is more effective to the deposit formation than oil nitration. And the temperature increase accelerates deposit formation and deposit formation increase rapidly above 26$0^{\circ}C$. Especially, in case of degraded oil, the deposit formation increases so rapidly that ring sticking can occur. The effect of piston temperature on the deposit formation was confirmed by engine test.

LPGdusfy 엔진의 피스톤온도 및 카본디포짓 형성에 관한 연구 (A Study on the Piston Temperatures and Carbon Deposit Formation in LPG Fuelled Engine)

  • 민병순;최재권;박찬준
    • 한국자동차공학회논문집
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    • 제6권2호
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    • pp.100-106
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    • 1998
  • The wide open throttle performance and piston temperatures were measured by the change of fuel : gasoline and liquefied petroleum gas(LPG). Bench test method was developed and experimented to study the effect of temperature on the formation of carbon deposit. The bench test results were confirmed by measuring the piston temperature and observing the deposit production rate at an actual engine running condition. Results show that if the fuel of spark ignition engine is changed from gasoline to LPG, the output power decreases about 10% and the piston temperatures increase about 40~55$^{\circ}C$. In actual engine tests, because of this temperature increase, it was observed that the quantity of carbon deposit in the top ring groove increased in a big degree. Consuquently, it is known that the fing sticking may occur if the gasoline engine was rebuilt to LPG fuelled engine. Therefore, in order to preserve the durability of LPG fuelled engine, it is necessary to lower the piston temperature by hardware modificationor to reduce the carbon deposit by the improvement of engine oil.

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