The Fluid Power Control Performance Comparison Study of Two-Type ER Valve Based on FLUENT

Author:

Zhu Shi Sha1,Tao Liu2

Affiliation:

1. Xiangtan University

2. Xiang Tan University

Abstract

The current flow and pressure drop of ER valve which is a new type power control valve could be adjusted by the electric field signal directly .In this paper, the fluid power control performance of concentric cylindrical ER valve and parallel plate-type ER valve based on ER principal is comparative studied .First power control equation has been analysed, and then flow simulation of internal flow field of ER valve has been taken based on FLUENT software. The results show that with the increasing of the strength of excitation field, the flow through the two different type of ER valve decreases, the pressure drop between import and export is even greater; and the fluid power control performance of parallel plate-type ER valve is superior to concentric cylindrical ER valve under the same control volume.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference10 articles.

1. Chenguan Wei., Shaohua Zhang.: Eleetrorheological Technology and Its Engineering APPlications[J]. In: Institute of Technology,Beijing,China, pp46一53(1995).

2. Shisha ZHU, Xiangchen Liu,Yijian Huang : Research On The Formulation of Electrorheological Fluidsand The Application [J]. CHINESE JOURNAL OF MECHANICAL ENGINEERING,6, (1996).

3. Whittle M., Bullough W.A. The Structrue of Smart Fluid. [J]. Nature 1992: 373-376.

4. Shisha. Zhu, Linsong. Chen, Qixin. Wang. Control unit for actualizing electrorheological fluid dynamic transmission[J] Journal of Central South University of Technology, 2007, 14(1): 266- 270.

5. Topgu. E. R, Kapucu S. An Experimental Study of Electrorheo-logical Valve Pressure Drop Characteristics of the 14th International Conference on CAD/CAM. Robotics and Factories of the Future. [J]. Coimbatore, INDIA, 30, 1998: 427-431.

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