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Design and optimization of hydraulic slide valve spool structure based on steady state flow force

Ruichuan Li, Zhibo Wang,Jikang Xu,Wentao Yuan,Dongwei Wang, Hailong Ji, Sen Chen

FLOW MEASUREMENT AND INSTRUMENTATION(2024)

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Abstract
This article studies the structure of hydraulic spool valve and the influence of different pressure differences on steady-state flow force. An improved scheme of designing a jet guide groove on the valve core is proposed to compensate for steady-state flow force. This article uses the CFD method to study the influence of spool valve structural parameters on steady-state flow force. The response surface method is used to establish the Polynomial regression model of the steady-state flow force, and the optimal structure size of the jet guide slot is obtained. The results indicate that the flow force increases with the increase of pressure difference. Moreover, under the same operating conditions, the absolute flow force of the spool valve with jet guide groove is smaller than that of the spool valve without jet guide groove. Therefore, the jet guide groove can effectively compensate for steadystate flow force, improve the control accuracy of the valve, and improve the stability of the spool valve.
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Key words
Slide valve flow force,Fluid simulation,Spool structural optimization,Response surface
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