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A Theoretical Study of the Effect of Inertia Force of the Vanes on Performance of Hydraulic Balanced Vane Pump by Using Advanced Hypertrochoid Curve at the Inner Surface of Its Stator

Publish Year: 1390
Type: Conference paper
Language: English
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AUTOENG01_046

Index date: 13 May 2012

A Theoretical Study of the Effect of Inertia Force of the Vanes on Performance of Hydraulic Balanced Vane Pump by Using Advanced Hypertrochoid Curve at the Inner Surface of Its Stator abstract

In the latest our work, the possibility of application of the advanced hypertrochoid curve in the inner surface of the stator of fixed displacement hydraulic balanced vane pump, theoretically, was studied. By considering the properties of this curve, sealing action between pressure and suction sides of the pump can be improved. One of the important characteristics of a new profile must be improving of the inertial reaction of the vanes in each position where these vanes have a radial movement because it causes a smooth sliding motion of the vanes, and hence, a higher performance of the pump while attaining a longer life of it. Then in the present paper, the effect of the inertial force of the vanes on the performance of the pump with this curve will be studied. The regular motion of the vanes on the inner surface of the stator with smooth profile suppresses the lateral reactional force applied to the vanes and results to diminish local wear of the vanes tip and noise

A Theoretical Study of the Effect of Inertia Force of the Vanes on Performance of Hydraulic Balanced Vane Pump by Using Advanced Hypertrochoid Curve at the Inner Surface of Its Stator Keywords:

Hydraulic balanced vane pump , Stator , Advanced hypertrochoid curve , Inertia force

A Theoretical Study of the Effect of Inertia Force of the Vanes on Performance of Hydraulic Balanced Vane Pump by Using Advanced Hypertrochoid Curve at the Inner Surface of Its Stator authors

Mojtaba Ebrahimi

Department of Mechanical Engineering, Ayatollah Amoli Branch, Islamic Azad University

Seyed Ali Jazayeri

Department of Mechanical Engineering, K.N. Toosi University of Technology

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Pippenger, J., and T.G.Hicks, T. G. 1980. Industril hydraulics. Mc ...
Leroy, A., Mons, J., and Flamme, B 1985. Positive improved ...
Tsuchia, K., Sasaya, H., and Nara, A. 1981. Vane pummp ...
Jazayeri, S. A. , and Ebrahimi, M. 20 03. Application ...
Ebrahimi, M., and Jazayeri, S. A. 2010. A study of ...
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