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基于边界效应和非牛顿效应的活塞杆密封润滑分析 被引量:1

Analysis of Reciprocating Seal Lubrication for Seal Considering Based on the Boundary Effect and Non-Newtonian Effect
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摘要 针对活塞杆密封平行间隙建立了适用于活塞杆密封的热流体润滑模型。以活塞杆内行程为例,研究了液压润滑剂的边界效应和非牛顿效应对密封件流体润滑模型油膜压力分布的影响,并与不考虑边界效应的牛顿流体润滑模型的油膜压力分布进行了比较。结果表明:对于活塞杆往复密封,在研究的工况范围内,边界效应和非牛顿效应对油膜压力分布都有一定的影响。相对滑动速度较高、油膜厚度较薄时边界效应对油膜压力分布的影响较大;特征剪应力较小时非牛顿效应较明显。 A thermal hydrodynamic lubrication model was established for the parallel gap between a seal and a piston rod. In the inward stroke of the piston rod, the influence of the boundary effect and the non Newtonian effect on the hydrodynamic lubrication of seals was investigated, and comparison to Newtonian hydrodynamic lubrication model without the boundary effect was made. Results show that, for reciprocating seal, in this study, boundary effect and non-Newton effect have an influence on the oil film pressure, when the relative sliding speed is higher or the oil film is thinner, the boundary effect has a great influence on oil pressure; When the characteristics of the shear stress is less, the non-Newtonian effect is more obvious.
出处 《机械设计与制造》 北大核心 2014年第9期150-152,共3页 Machinery Design & Manufacture
基金 国家自然科学基金项目(51075221 51105214)
关键词 平行间隙 往复密封 热效应 非牛顿效应 边界效应 Parallel Gap Reciprocating Seal Thermal Effect Non-Newtonian Effect Boundary Effect
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  • 1卢建军,邱明.数值法研究无限长线接触弹流问题发展状况[J].液压与气动,2007,31(3):5-9. 被引量:1
  • 2[2]Roelands C J A.Correlation Aspects of Viscosity-Temperature-Pressure Relationship of Lubrication Oils[D].Netherlands:Delft University of Technology,1966.
  • 3[3]Dowson D,Higginson G R.Elastohydrodynamic Lubrication[M].Oxford:Pergamon Press,1966.
  • 4[1]Wong P L,Xu H,Zhang Z.Performance Evaluation of High Pressure Sleeve Seal[J].Wear,1997,210(1/2):104-111.
  • 5[2]F Pipper.Handling Hostile Environments at a Stroke[J].Sealing Technology,1999,61:7-9.
  • 6[3]S Nowak.Keeping Friction in Check[J].Scaling Technoiogy,1999,62:6-8.
  • 7张鹏顺.线接触弹流油膜厚度计算的-个统-公式和修正的润滑状态图.润滑与密封,1983,(5):25-32.
  • 8Xie Liangxi,Numerical modeling of contact pressure in vane seals,ASME Design Engineering Technical Conference,2009.
  • 9Nikas,G.K.and Sayles,R.S.Study of leakage and friction of flexible Seals for steady motion via a numerical approximation method.Tribol Int.,2006,39(9):921-936.
  • 10Muller,Hk ahd Nan,B.S.Fluid sealing technology pnnciples and applications,Springer,2002.

共引文献28

同被引文献14

  • 1杨俭,方宇,尧辉明.柱塞密封流体动力学特性研究[J].润滑与密封,2008,33(9):10-12. 被引量:5
  • 2李强,杨晓京,汤江龙.非接触式旋转接头的设计[J].润滑与密封,2006,31(4):150-151. 被引量:6
  • 3Capone G. Descrizione Analitica Del Campo Di Forze Fluido- dinamico Nei Cuscinetti Cilindrici Lurificati[J]. L' Energia Elettrica, 1991 (3) .. 105-110.
  • 4ADILETTA G, GUIDO A R, ROSSI C. Chaotic Motions of a Rigid Rotor in Short Journal Bearings[J]. Nonlinear Dynamics, 1996(10) :251-269.
  • 5WHIPPLE R T P. Herringbone-Pattern Thrust Bearings[M]. Harwell, Berkshire : England Atomic Energy Research Estab- lishment, 1951.
  • 6HSING F C. Analytical Solutions for Incompressible Spiral Groove Viscous Pumps[J]. ASME Journal of Lubrication Technology, 1974(7) :365-369.
  • 7GARNER J F. Combined Hydrostatic and Hydrodynamic Principle Applied to Non-Contacting Face Seals[C]//Proc of 4th International Conference on Fluid Sealing. 1970: 351- 360.
  • 8CHENG H S, CHOW C Y, WILCOCK D F. Behavior of Hy- drostatic and Hydrodynamic Noncontacting Face Seals[J]. Journal of Lubrication Technology, 1967,89 ( 2 ) : 51 0——519.
  • 9ETSION I, CONSTANTINESCU I. Expermetal Observation of the Dynamic Behavior of Noncontacting Coned-Face Mechanical Seals[J]. ASLE Transaction, 1971,27 (3) : 263- 273.
  • 10ETSION I. A New Concept of Zero-Leakage Non-Contacting Mechanical Face Seal[J]. ASME Journal of Tribology, 1984, 106 : 338-343.

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