期刊文献+

A Transient Thermohydrodynamics Study of Plain Journal Bearings Using Newton-Raphson Method Analysis

基于Newton-Raphson算法的径向轴承瞬态热流体动力润滑的研究(英文)
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摘要 The present paper proposes three-dimensional model necessary to calculate the transient temperature field in a journal bearing submitted to a sudden change in speed and load and analyzes the bearing performance numerically. Thermal deformation of the bush and realistic thermal boundary conditions at oil and bush interface are considered. At each time step a Newton-Raphson method is used to solve the Reynolds equation, film thickness equation and the motion equation of the journal simultaneously to obtain the pressure distribution and the velocity of the journal center. Then the fluid film force is acquired through integral of fluid film force and the acceleration and position of the journal center are acquired through differences of the velocity. The energy equations of the oil film and the bush are solved simultaneously by using an efficient finite difference scheme. Then the transient three dimensional temperature field of the bearing is acquired by combining the energy equations and the Reynolds equation through the nodal temperature and pressure. It is found that the approaches introduced here converge quickly and save calculation time greatly. The present paper proposes three-dimensional model necessary to calculate the transient temperature field in a journal bearing submitted to a sudden change in speed and load and analyzes the bearing performance numerically. Thermal deformation of the bush and realistic thermal boundary conditions at oil and bush interface are considered. At each time step a Newton-Raphson method is used to solve the Reynolds equation, film thickness equation and the motion equation of the journal simultaneously to obtain the pressure distribution and the velocity of the journal center. Then the fluid film force is acquired through integral of fluid film force and the acceleration and position of the journal center are acquired through differences of the velocity. The energy equations of the oil film and the bush are solved simultaneously by using an efficient finite difference scheme. Then the transient three dimensional temperature field of the bearing is acquired by combining the energy equations and the Reynolds equation through the nodal temperature and pressure. It is found that the approaches introduced here converge quickly and save calculation time greatly.
出处 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2003年第4期233-240,共8页 中国航空学报(英文版)
关键词 thermohydrodynamics TRANSIENT Newton-Raphson method journal bearing thermohydrodynamics transient Newton-Raphson method journal bearing
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参考文献12

  • 1Jang J Y, Khonsar M M, Pascovici M D. Thermohydrodynamic seizure: Experimental and theoretical analysis [J].ASME Journal of Tribology, 1998, 120: 8-15.
  • 2Ezzat H A, Rohde S M. Thermal transient in finite slider bearings[J]. ASME Journal of Tribology, 1974, 95: 315-321.
  • 3Ettles C M, Heshmat H, Brockwel K R. Elapsed time for the decay of thermal transients in fluid film bearing [A].Proceedings of the 15th Leedslyon Symosium on Tribology[C]. 1988. 229-235.
  • 4Khonsari M M, Wang S H. Notes on transient THD effects in a lubricating film [J]. Tribology Transactions,1992, 35(1): 177-183.
  • 5Paranjpe R S, Han T. A study of the thermohydrodynamicperformance of steadily loaded journal bearings[J].Tribolngy Transactions, 1994, 37(4): 679-690.
  • 6Kucinschi B R, Fillon M, Frene J. A transient thermoelastohydrodynamic study of steadily loaded plain journal bearings using finite element method analysis[J]. ASME Journal of Tribotogy, 2000, 122: 219-226.
  • 7Kucinschi B R, FiUon M. An experimental study of transient thermal effects in a plain journal bearing[J]. ASME Journal of Tribology, 1999, 121: 327-332.
  • 8Yang P R, Wen S Z. A generalized Reynolds equation for non-Newtonian thermal elastohydrodynamic lubrication[J].ASME Journal of Tribology, 1990, 112 : 631- 636.
  • 9Yang P R. Numerical analysis of fluid lubrication[M]. Beijing : National Defence Industry Press, 1998. 97.
  • 10Houpert L G, Hamrock B J. Fast approach for calculating film thickness and pressures in elastohydrodynamically lubricated contacts at high load [J]. ASME Journal of Trobology, 1986, 108: 411-420.

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