Flow characteristics of a trochoidal-gear pump using bond graphs and experimental measurement. Part 1

被引:25
作者
Department of Fluid Mechanics, Technical University of Catalonia, Laboratory of Oil-Hydraulic and Pneumatic Systems, ETSEIAT - TR4 017, ccColom no 7-11, Terrassa, Barcelona [1 ]
08222, Spain
机构
[1] Department of Fluid Mechanics, Technical University of Catalonia, Laboratory of Oil-Hydraulic and Pneumatic Systems, ETSEIAT - TR4 017, ccColom no 7-11, Terrassa, Barcelona
关键词
Bond graphs; Flow ripple; Trochoidal profiles;
D O I
10.1243/09596518JSCE250
中图分类号
学科分类号
摘要
The current paper presents an extensive study aimed at trochoidal-gear pumps. In recent years their important application in the automotive industry, where trochoidal-gear pumps are increasingly in use, has encouraged work to enhance a better understanding of their characteristics and performance. To different extents, geometry and kinematics of trochoidal profiles and volumetric characteristics are considered. The bond graph technique is applied to model a trochoidal-gear pump based upon an ideal representation in order to simulate the instantaneous flow. The frequent intricate aspects of leakage have been deliberately left aside in this part 1 of the present paper. Nevertheless, leakage and interaction of the flow inside the pump will be presented in part 2 of this paper. The experimental determination of the flow ripple of a crankshaft-mounted gerotor pump for IC engine lubrication is also considered. A convenient method of experimentally measuring the so-called 'secondary source' method is presented. The method is based on the analysis of the wave propagation characteristics in a circuit which includes the pump under test and an additional source of fluid-borne noise. In addition to allowing investigation of the flow characteristics through simulation and experimental measurement, which obtains interesting results, this study also provides a way of obtaining the dynamic properties of trochoidal-gear pumps under realistic conditions for use in further studies for modelling more complex hydraulic components. © IMechE 2007.
引用
收藏
页码:331 / 346
页数:15
相关论文
共 21 条
[1]  
Ansdale R.F., Lockley D.J., The Wankel RC Engine Design and Performance, (1968)
[2]  
Colbourne J.R., The geometry of trochoid envelopes and their application in rotary pumps, Mechanism Machine Theory, 9, pp. 421-435, (1974)
[3]  
Robinson F.J., Lyon J.R., An analysis of epitrochoidal profiles with constant difference modification suitable for rotary expanders and pumps, J. Engng Ind. ASME Trans., pp. 161-165, (1976)
[4]  
Shung J.B., Pennock G.R., Geometry for trochoidal-type machines with conjugate envelopes, Mechanism Machine Theory, 29, 1, pp. 25-42, (1994)
[5]  
Mimmi G., Pennacchi P., Rotor design and optimization in internal lobe pumps, The 5th Pan-American Congress of Applied Mechanics, 50, 11, pp. 133-141, (1997)
[6]  
Stryczek J., Hydraulic machines with cycloidal gearing, Archiwum Budowy Maszyn, 43
[7]  
Dasgupta K., Mukherjee A., Maiti R., Theoretical and experimental studies of the steady state performance of an orbital rotor low-speed high-torque hydraulic motor, Proc. Instn Mech. Engrs, Part A: J. Power and Energy, 210, A6, pp. 423-429, (1996)
[8]  
Fabiani M., Manco S., Nervegna N., Rundo M., Armenio G., Pachetti C., Trichilo R., Modelling and simulation of gerotor gearing in lubricating oil pumps, SAE Trans, J. Engines, 108, 3, pp. 989-1003, (1999)
[9]  
Manco S., Nervegna N., Rundo M., Armenio G., Pachetti C., Trichilo R., Gerotor lubricating oil pump for IC engines, SAE Paper, pp. 1-17, (1998)
[10]  
Manco S., Nervegna N., Rundo M., A contribution to the design of hydraulic lube pumps, Int. J. Fluid Power, 3, 1, pp. 1-11, (2002)