• 제목/요약/키워드: Piston temperature distribution

검색결과 40건 처리시간 0.025초

T5 열처리한 Al합금 금형주조품에서 경도의 역분포현상 ("An Inverse Distribution of Hardness in T5-Heat Treated Al-Alloy Permanent Mold Castings")

  • 이진형
    • 한국주조공학회지
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    • 제8권3호
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    • pp.282-286
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    • 1988
  • Aluminum alloy permanent mold castings often exhibit in as-cast or T5-heat treated state an inverse distribution of hardness, i.e. thinner sections have lower hardness than thicker sections. This phenomina is explained by measuring the cooling curves in a test casting in an Aluminum piston alloy (AC8A or A332). Thinner sections solidify faster but later cooles down more slowly than thicker sections in temperature range where coarse precipitation of supersaturated elements can take place. The precipitation rate of $Mg_2Si$ phase in A332 alloy seems to be maximum at around $490^{\circ}C$.

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미산란 기법에 의한 고압 6공 연료분사기의 분무형상에 대한 실험적 연구 (Experimental Study on Spray Structure of a High Pressure 6-Hole Injector by Mie Scattering Technique)

  • 김성수
    • 대한기계학회논문집B
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    • 제32권11호
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    • pp.878-883
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    • 2008
  • The spray characteristics of a high pressure 6-hole injector were examined in a single cylinder optical direct injection spark ignition (DISI) engine. The effects of injection timing, in-cylinder charge motion, fuel injection pressure and coolant temperature were investigated using the 2-dimensional Mie scattering technique. It was confirmed that the in-cylinder charge motion played a major role in the fuel spray distribution during the induction stroke while the propagation of fuel spray was restrained during the compression stroke by the increasing pressure and the upward moving piston. In additions, it was confirmed that the liquid fuel droplets existing at the sprays edges were vaporized by the increase of the coolant temperature.

상변화를 동반한 충돌분무의 거동해석 (Analysis of the Impinging Spray Behavior Accompanying with Change of Phase)

  • 송홍종;차건종;김덕줄
    • 대한기계학회논문집B
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    • 제24권6호
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    • pp.852-859
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    • 2000
  • The emission in the exhaust gas from diesel engine is effected by the fuel spray characteristics. The spray of D.I. diesel engine impinges on a piston cavity and a cylinder wall. It is very important to know exactly the distribution and behavior of the spray inside cylinder. The objective of this study is to develop more accurate evaporation model. The EPISO code was used to analyze the flow characteristics in the engine. The Wakil model and the Faeth model are applied to the EPISO code to analyze the behavior of impinging spray. And also experimental and numerical analysis were carried out. The spray behavior characteristics were investigated by changing injection pressure, ambient pressure and temperature. The behavior of impinging spray was strongly effected by the change of ambient pressure and temperature. The effects of evaporation and rebounding droplet should be considered.

STUDY OF CORRELATION BETWEEN WETTED FUEL FOOTPRINTS ON COMBUSTION CHAMBER WALLS AND UBHC IN ENGINE START PROCESSES

  • KIM H.;YOON S.;LAI M.-C.
    • International Journal of Automotive Technology
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    • 제6권5호
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    • pp.437-444
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    • 2005
  • Unburned hydrocarbon (UBHC) emissions from gasoline engines remain a primary engineering research and development concern due to stricter emission regulations. Gasoline engines produce more UBHC emissions during cold start and warm-up than during any other stage of operation, because of insufficient fuel-air mixing, particularly in view of the additional fuel enrichment used for early starting. Impingement of fuel droplets on the cylinder wall is a major source of UBHC and a concern for oil dilution. This paper describes an experimental study that was carried out to investigate the distribution and 'footprint' of fuel droplets impinging on the cylinder wall during the intake stroke under engine starting conditions. Injectors having different targeting and atomization characteristics were used in a 4-Valve engine with optical access to the intake port and combustion chamber. The spray and targeting performance were characterized using high-speed visualization and Phase Doppler Interferometry techniques. The fuel droplets impinging on the port, cylinder wall and piston top were characterized using a color imaging technique during simulated engine start-up from room temperature. Highly absorbent filter paper was placed around the circumference of the cylinder liner and on the piston top to collect fuel droplets during the intake strokes. A small amount of colored dye, which dissolves completely in gasoline, was used as the tracer. Color density on the paper, which is correlated with the amount of fuel deposited and its distribution on the cylinder wall, was measured using image analysis. The results show that by comparing the locations of the wetted footprints and their color intensities, the influence of fuel injection and engine conditions can be qualitatively and quantitatively examined. Fast FID measurements of UBHC were also performed on the engine for correlation to the mixture formation results.

유한요소해석을 이용한 유압브레이커용 우레탄 패킹의 성능분석 (Performance Analysis of Urethane Packing in the Hydraulic Breaker by a Finite Element Method)

  • 신현우;홍종우;최이광
    • 한국정밀공학회지
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    • 제33권2호
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    • pp.139-147
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    • 2016
  • Performances of urethane packing in the hydraulic breaker were analyzed using a finite element method. Because of high temperature and high pressure in the hydraulic breaker, it is better to use urethane rather than rubber as a packing material. We obtained the physical properties of urethane at elevated temperature by the tensile test. We analyzed buffer seal and U-packing maintaining the pressure and preventing oil leakage. Deformation, stress distribution, contact length, contact pressure of packing at each pressure step were obtained using finite element analysis. As the temperature increases, stress and contact force tend to decrease at low pressure. As the gap between piston and cylinder increases, contact length and contact forces decrease. Consequently, it is possible to design the packing section using these analyses, and construct a system to predict the possibility of oil leakage in the hydraulic breaker.

자동변속기 마찰요소의 동특성 해석 (Analysis of Dynamics Characteristics for Friction Elements in Automatic Transmission)

  • 최영종;정우진;김성원
    • 한국자동차공학회논문집
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    • 제5권5호
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    • pp.9-19
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    • 1997
  • In this paper, the modeling and analysis of dynamic characteristics has been carried out for friction clutches and brakes in an automatic transmission. From the operating oil pressure generated by the valve-body, time delay by check valve and the movement of piston has been examined. Also torque capacity and torque transferred at the clutch is studied. Heat capacity and temperature distribution at the reaction plate of clutch are codeled by time-dependent, nonhomogeneous partial differential equation, and brake torque, brake time, and the amount of heat generated are investigated. It is found that the time delay at the check valve is very short but dominant at the spool.

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도로 터널내의 공기유동 양상을 예측하기 위한 수치해석 (Numerical Analysis to Predict Air Flow Phenomena in a Road Tunnel)

  • 최인수;박병덕;윤일로
    • 한국산업융합학회 논문집
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    • 제5권4호
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    • pp.313-320
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    • 2002
  • A 2-dimensional $k-{\varepsilon}$ numerical model was developed to explore the effects of vehicle movement, jet fan and wind speed for the ventilation of road tunnels. To consider the temperature distribution in the tunnel, the energy equation was solved with a source term of the energy exhausted from vehicles. Although the tunnel ventilation can be made by the piston effect of vehicle movement, an additional ventilation is necessary when a head wind is existing. Jet fans may assist the air flow in the tunnel. However, more efficient ventilation system should be necessary, because the exhaust gas from vehicles flow along the road surface and it cannot be diffused in the longitudinal tunnel.

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디젤엔진 관련 Soot 부착 및 재유입에 관한 화염에서의 연구 (A Flame Study of Soot Deposition and Reentrainment in Application to Control of Diesel Soot Emission)

  • 김성근;박종인
    • 대한기계학회논문집B
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    • 제20권8호
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    • pp.2626-2636
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    • 1996
  • A study of soot deposition and reentrainment was carried out both theoretically and experimentally to understand behavior of soot formed by incomplete combustion in a diesel engine. Theoretically, soot deposition on engine cylinder wall and/or piston head was studied with a stagnation point flow approximation. Soot reentrainment occurred upon exhaust gas blowdown was also studied by assuming a long-normal shear velocity distribution. Experimentally, a LPG$O_2/N_2$ flame impinging on a disk, produced by a concentric tubular burner, was chosen as deposition configuration and a shear flow unit with compressed air was installed for the study of reentrainment. For selected flame configuration, soot deposition measurements were conducted and showed that the dominant deposition mechanism was thermophoresis. Distributions of gas temperature and soot number density were estimated by combining data obtained by a B-type thermocouple with a thermophoretic transport theory. Disk temperature distributions were directly measured using a K-type thermocouple. Soot size and morphology were estimated from a TEM photograph. Ratios of soot deposit to reentrained amount were measured for a wide range of shear flow velocities, which showed that the reentrainment model was reasonable.

직접분사식 가솔린 엔진에서 연료 온도에 따른 팬형 분무 및 연소 특성의 변화 (The Effects of Fuel Temperature on the Spray and Combustion Characteristics of a DISI Engine)

  • 문석수;;배충식
    • 한국자동차공학회논문집
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    • 제14권3호
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    • pp.103-111
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    • 2006
  • The spray behavior of direct-injection spark-ignition(DISI) engines is crucial for obtaining the required mixture distribution for optimal engine combustion. The spray characteristics of DISI engines are affected by many factors such as piston bowl shape, air flow, ambient temperature, injection pressure and fuel temperature. In this study, the effect of fuel temperature on the spray and combustion characteristics was partially investigated for the wall-guided system. The effect of fuel temperature on the fan spray characteristics was investigated in a steady flow rig embodied in a wind tunnel. The shadowgraphy and direct imaging methods were employed to visualize the spray development at different fuel temperatures. The microscopic characteristics of spray were investigated by the particle size measurements using a phase Doppler anemometry(PDA). The effect of injector temperature on the engine combustion characteristics during cold start and warming-up operating conditions was also investigated. Optical single cylinder DISI engine was used for the test, and the successive flame images captured by high speed camera, engine-out emissions and performance data have been analyzed. This could give the way of forming the stable mixture near the spark plug to achieve the stable combustion of DISI engine.

고장 사례 분석을 통한 수중함용 디젤엔진 건전성에 관한 연구 (A Study on the Improvement of Operation Performance of Wet Bell Diving System in the Salvage Ship)

  • 최우석;민태규;김병호;장호성
    • 한국산학기술학회논문지
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    • 제21권8호
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    • pp.98-106
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    • 2020
  • 본 연구는 고장 사례 분석을 통한 수중함용 디젤엔진 건전성에 관한 내용으로 수중함 건조 중 발생한 비정상 디젤엔진 정지 현상에 대한 발생 원인을 다각도로 분석하였으며 또한 2차 손상 부위에 대한 건전성을 검토하였다. 디젤엔진 정지 현상에 대해서는 비정상 전 후로 피스톤 내부 온도변화 및 손상부 점검 확인을 통해 분석 하였다. 또한 폭발로 인한 2차 손상 부위를 분석하기 위해 디젤엔진의 가장 핵심 부품인 크랭크 축으로 전달되는 인장응력 및 압축응력을 계산 하였고 유한요소 해석을 통해 응력분포를 검토 하였으나 크랭크 축은 설계적으로 안전하다는 것을 확인 하였으며, 최종적으로 디젤엔진을 함 외부로 취외하여 정밀 점검 하였을 때에도 크랭크 축에는 손상이 없는 것을 확인 하였다. 본 연구결과를 통하여 디젤엔진 비상정지 사고 발생에 대한 크랭크 축의 건전성을 사전 검증하였다. 이에 최소 범위에서 점검 및 복구하였으며 디젤엔진 품질을 확보 할 수있었다. 본 연구를 통하여 향후 디젤엔진 품질문제 검토 시 건전성확보를 위한 참고자료로 활용될 수 있을 것으로 기대된다.