• 제목/요약/키워드: Lubricant viscosity

검색결과 111건 처리시간 0.019초

볼 베어링과 스퀴즈 필름 댐퍼로 지지되는 차량용 터보차저의 회전체동역학 해석: 스퀴즈 필름 댐퍼 설계 인자와 회전체 불균형 질량의 영향 (Rotordynamic Analysis of Automotive Turbochargers Supported on Ball Bearings and Squeeze Film Dampers in Series: Effect of Squeeze Film Damper Design Parameters and Rotor Imbalances)

  • 김규만;류근
    • Tribology and Lubricants
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    • 제34권1호
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    • pp.9-15
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    • 2018
  • Modern high-performance automotive turbochargers (TCs) implement ceramic hybrid angular contact ball bearings in series with squeeze film dampers (SFDs) to enhance transient responses, thereby reducing the overall emission levels. The current study predicts the rotordynamic responses of the commercial automotive TCs (compressor wheel diameter = ~53 mm, turbine wheel diameter = ~43 mm, and shaft diameter at the bearing locations = ~7 mm) supported on ball bearings and SFDs for various design parameters of SFDs, including radial clearance, axial length, lubricant viscosity, and rotor imbalance conditions (i.e., amplitudes and phase angles) while increasing rotor speed up to 150 krpm. This study validates the predictive rotor finite element model against measurements of mass, polar and transverse moments of inertia, and free-free mode natural frequencies and mode shapes. A nonlinear rotordynamic model integrates nonlinear force coefficients of SFDs to calculate the transient responses of the TC rotor-bearing system. The predicted results show that SFD radial clearances, as well as phase angles of rotor imbalances, have the paramount effect on the dynamic responses of TC shaft motions.

왕복동형 압축기 피스톤의 동적 거동 해석 (Dynamic Behavior Analysis of Reciprocating Compressor Pistons)

  • 김태종
    • 한국소음진동공학회논문집
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    • 제12권9호
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    • pp.717-724
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    • 2002
  • In this study, a numerical analysis for the piston secondary dynamics of small refrigeration reciprocating compressors is performed. In general, the length of cylinder in this class of compressors is shortened to diminish the frictional losses of the piston-cylinder system. So, the contacting length between piston and cylinder wall is in variable with the rotating crank angle around the BDC of the reciprocating piston. In the problem formulation of the piston dynamics, the change in bearing length of the piston and all corresponding forces and moments are considered in order to determine the piston trajectory, velocity and acceleration at each step. A Newton-Raphson procedure was employed in solving the secondary dynamic equations of the piston. The developed computer program can be used to calculate the entire piston trajectory and the hydrodynamic force and moment as functions of crank angle under compressor running conditions. The results explored the effects of the radial clearance, lubricant viscosity, length of the cylinder wall, and pin location on the stability of the piston.

FlowFactor를 이용한 볼베어링의 탄성유체윤활해석 (EHL Analysis of Ball Bearing for Rough Surface With the FlowFactor)

  • 이병욱;문석만;김태완;조용주
    • Tribology and Lubricants
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    • 제27권6호
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    • pp.326-331
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    • 2011
  • The purpose of this paper is to analyze and discuss the effects of surface roughness by comparing the elastohydrodynamic lubrication(EHL) analysis of smooth surface and rough surface as the ball bearing. In order to do this, The average flow model is adapted for the interaction of the flow rheology of lubricant and surface roughness. The average Reynolds equation and the related flow factor which describes the coupled effects of surface roughness and flow rheology, the viscosity-pressure and density-pressure relations equations, the elastic deformation equation, and the force balance equation are solved simultaneously. The results show that effects of surface roughness on the film thickness and pressre distribution should be considered especially in EHL contact problems.

유전상수 센서를 이용한 유압 작동유의 분석을 위한 실험장비 개발 (Development of Experimental Device for Analysis of Hydraulic Oil Characteristics with Dielectric Constant Sensors)

  • 홍성호
    • Tribology and Lubricants
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    • 제37권2호
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    • pp.41-47
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    • 2021
  • An experimental device was developed for analysis of hydraulic oil characteristics with dielectric constant sensors. Online analysis is the most effective method of the three methods used for analyzing lubricant oils. This is because it can monitor the machine condition effectively using oil sensors in real time without requiring excellent analysis skill and eliminates human errors. Determining the oil quality usually requires complex laboratory equipment for measuring factors such as density, viscosity, base number, acid number, water content, additive, and wear debris. However, the electric constant is another indicator of oil quality that can be measured on-site. The electric constant is the ratio of the capacitance of a capacitor using that material as a dielectric, compared with a similar capacitor that has a vacuum as its dielectric. The electric constant affects the factors such as the base oil, additive, temperature, electric field frequency, water content, and contaminants. In this study, the tendency of the electric constant is investigated with a variation of temperature, water content, and dust weight. The experimental device can control working temperature and mix the contaminants with oil. A machine condition monitoring program developed to analyze hydraulic oil is described. This program provides graph and digital values with variation of time. Moreover, it includes an alarm system for when the oil condition is bad.

가솔린 엔진에서 연료 분사량 및 오일 온도에 따른 피스톤 마찰손실 특성 연구 (Study on the Characteristics of Piston Friction Losses for Fuel Injected Mass and Oil Temperature in a Gasoline Engine)

  • 강종대;조진우;박성욱
    • 한국분무공학회지
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    • 제27권3호
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    • pp.161-166
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    • 2022
  • To measure the change in friction loss due to the control of fuel mass and oil temperature in a gasoline engine, the floating liner method was used to measure the friction generated by the piston of a single-cylinder engine. First, to check the effect of combustion pressure on friction, the friction loss was measured by adjusting the fuel mass. It was confirmed that the friction loss increased as the fuel mass increased under the same lubrication conditions. In addition, it was confirmed that the mechanical efficiency decreased as the fuel mass increased. Next, to check the effect of lubrication conditions on friction, the friction loss was measured by controlling the oil temperature. It was confirmed that friction loss increased as the oil temperature decreased at the same fuel mass. As the oil temperature decreases, the viscosity increases, resulting in decreased mechanical efficiency and increased friction loss.

냉각 유량이 가스 포일 스러스트 베어링의 성능에 미치는 영향 (Effects of Cooling Flow Rate on Gas Foil Thrust Bearing Performance)

  • 황성호;김대연;김태호
    • Tribology and Lubricants
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    • 제39권2호
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    • pp.76-80
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    • 2023
  • This paper describes an experimental investigation of the effect of cooling flow rate on gas foil thrust bearing (GFTB) performance. In a newly developed GFTB test rig, a non-contact type pneumatic cylinder provides static loads to the test GFTB and a high-speed motor rotates a thrust runner up to the maximum speed of 80 krpm. Force sensor, torque arm connected to another force sensor, and thermocouples measures the applied static load, drag torque, and bearing temperature, respectively, for cooling flow rates of 0, 25, and 50 LPM at static loads of 50, 100, and 150 N. The test GFTB with the outer radius of 31.5 mm has six top foils supported on bump foil structures. During the series of tests, the transient responses of the bearing drag torque and bearing temperature are recorded until the bearing temperature converges with time for each cooling flow rate and static load. The test data show that the converged temperature decreases with increasing cooling flow rate and increases with increasing static load. The drag torque and friction coefficient decrease with increasing cooling flow rate, which may be attributed to the decrease in viscosity and lubricant (air) temperature. These test results suggest that an increase in cooling flow rate improves GFTB performance.

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.

Surface Texturing한 평행 스러스트 베어링의 열유체윤활 해석: 딤플 반경과 깊이의 영향 (THD Analysis of a Surface Textured Parallel Thrust Bearing: Effect of Dimple Radius and Depth)

  • 정요한;박태조
    • Tribology and Lubricants
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    • 제30권5호
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    • pp.303-310
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    • 2014
  • In order to reduce friction and improve reliability, researchers have applied various surface texturing methods to highly sliding machine elements such as mechanical seals and piston rings. Despite extensive theoretical research on surface texturing, previous numerical results are only applicable to isothermal and iso-viscous conditions. Because the lubricant flow pattern of textured bearing surfaces is much more complicated than that for non-textured bearings, the Navier?Stokes equation is more suitable than the Reynolds equation for the former. This study carries out a thermohydrodynamic (THD) lubrication analysis to investigate the lubrication characteristics of a single micro-dimpled parallel thrust bearing cell. The analysis involves using the continuity, Navier?Stokes, energy, temperature?viscosity relation, and heat conduction equations with the commercial computational fluid dynamics (CFD) code FLUENT. This study discretizes these equations using the finite volume method and solves them using the SIMPLE algorithm. The results include finding the streamlines, pressure and temperature distributions, and variations in the friction force and leakage for various dimple radii and depths. Increasing the dimple radius and decreasing the depth causes a recirculation flow to form because of a strong vortex, and the oil temperature greatly increases compared with the non-textured case. The present numerical scheme and results are applicable to THD analysis of various surface-textured sliding bearings and can lead to further study.

Estimation on clamping load of high strength bolts considering various environment conditions

  • Nah, Hwan-Seon;Choi, Sung-Mo
    • Steel and Composite Structures
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    • 제24권4호
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    • pp.399-408
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    • 2017
  • Of high strength bolts, the torque shear type bolt is known to be clamped normally when pin-tails are broken. Sometimes the clamping loads on slip critical connections considerably fluctuate from the required tension due to variation of torque coefficient. This is why the viscosity of lubricant affects the torque coefficient by temperature. In this study, the clamping tests of high strength bolts were performed independently at laboratory conditions and at outdoor environment. The temperatures of outdoor environment candidates were ranged from $-11^{\circ}C$ to $34^{\circ}C$ for six years. The temperature at laboratory condition was composed from $-10^{\circ}C$ to $50^{\circ}C$ at each $10^{\circ}C$ interval. At outdoor environment conditions, the clamping load of high strength bolt was varied from 159 to 210 kN and the torque value was varied from 405 to 556 Nm. The torque coefficients at outdoor environment were calculated from 0.126 to 0.158 when tensions were measured from 179 to 192 kN by using tension meter. The torque coefficients at outdoor environment conditions were analyzed as the range from 0.118 to 0.152. From these tests, the diverse equations of torque coefficient, tension dependent to temperature can be acquired by statistic regressive analysis. The variable of torque coefficient at laboratory conditions is 0.13% per each $1^{\circ}C$ when it reaches 2.73% per each $1^{\circ}C$ at outdoor environment conditions. When the results at laboratory conditions and at outdoor environment were combined to get the revised equations, the change in torque coefficient was modified as 0.2% per each $1^{\circ}C$ and the increment of tension was adjusted as 1.89 % per each $1^{\circ}C$.

국내 아스팔트 릴리스 에이전트의 특성 평가 (Evaluation of the Characteristics of Asphalt Release Agents)

  • 김부일
    • 한국도로학회논문집
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    • 제9권2호
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    • pp.13-25
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    • 2007
  • 아스팔트의 점성, 부착성, 점착성 등은 도로포장 재료로서 아스팔트 혼합물이 제 기능을 수행하도록 하는 중요한 특성이다. 그러나 이러한 특성은 아스팔트 혼합물의 생산, 이동, 포설, 다짐 등의 과정에서 아스팔트가 시공장비에 달라붙는 현상을 유발시켜 이로 인하여 부정확한 아스팔트 혼합물량 유발, 아스팔트 함량 저하, 작업성 저하 등과 같은 문제를 야기한다. 아스팔트 포장 시공중에 발생하는 이러한 문제를 해결하기 위해 아스팔트 릴리스 에이전트(Asphalt Release Agent)가 주로 이용된다. 국내에서는 아스팔트 릴리스 에이전트로서 경험적으로 경유와 식물성 오일인 콩기름이 주로 이용되고 있다. 그러나 경유와 콩기름은 아스팔트를 녹이고 여러 가지 환경적인 문제를 야기한다고 알려져 있다. 따라서 본 연구에서는 경유와 콩기름 외에 이멀젼 타입의 아스팔트 릴리스 에이전트 2종에 대한 추가 실내실험을 통해 이들의 아스팔트 릴리스 에이전트로서의 적정성 여부를 파악해보고자 하였다. 연구결과, 경유는 혼합물 운반초기 (10분 이내)에 심각한 수준으로 아스팔트를 녹이며, 콩기름의 경우 혼합물과 접촉 약 1시간 후부터 심각한 아스팔트 박리를 발생시킴을 알 수 있었다. 또한 적용 주기를 파악하기 위한 시험결과, 경유와 콩기름은 1번의 도포로 금속판에 부착된 아스팔트를 연속해서 2회 이상 벗겨내는데 실패하였다. 이는 현장에서 아스팔트가 묻어나지 않도록 하기 위해서는 시공장비 사용시 매번 이들을 도포해야 한다는 것을 의미한다. 그러나 경유와 콩기름은 트럭 바닥판과 혼합물 사이의 윤활제로서의 기능은 충분히 수행하는 것으로 나타났다.

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