TRANSACTIONS OF THE JAPAN FLUID POWER SYSTEM SOCIETY
Online ISSN : 1349-7022
Print ISSN : 1880-3121
ISSN-L : 1349-7022
Paper
Fabrication and Evaluation of Hydraulic Particle Excitation Valve Vibrated Perpendicularly to Direction of Flow Path
Takahiro UKIDAKoichi SUZUMORIHiroyuki NABAETakefumi KANDA
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2018 Volume 49 Issue 1 Pages 10-17

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Abstract

We introduce a new particle excitation control valve that is driven by a vibration of a different direction from the previous particle excitation control valve. Conventional small hydraulic servo valves have some disadvantages such as a complex structure and waste of hydraulic energy. As a way to solve these disadvantages, we study a hydraulic small control valve using a piezoelectric vibrator. We confirmed that the proposed control valve was operated with low viscosity fluid in our previous research. However, the control valve was not operated with high viscosity fluid, because a force required to open the valve is increased due to rising of the viscosity. In this paper, we fabricate a new prototype valve driven by the perpendicular vibration to the flow direction in order to achieve the operation of the valve with the common hydraulic oil, and evaluate the characteristics of the valve due to changing the valve seat shapes. As a result, we found that the taper angle of the valve seat has an optimum value. When the taper angle of the valve seat is 100°, the prototype valve was opened by the lower voltage than the other taper angles. In addition, when the silicone oil was used as the working fluid, with kinematic viscosity values of 30㎟/s, which is nearly equal to the kinematic viscosity of the common hydraulic oil, we have succeeded in opening the valve at 0.8MPa. Since the previous particle excitation valve cannot be opened in the high viscosity working fluid, these results indicate the possibility for operating the proposed valve with the common hydraulic oil.

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© 2018 by The Japan Fluid Power System Society
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