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Investigation of cavitation phenomena in the valve port of the high frequency electro-hydraulic digital valve

机译:高频电液数字阀阀口气蚀现象的研究

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High frequency electro-hydraulic digital valve (abbr. digital valve) achieves its function by periodical on-offs of the valve ports which formed between the spool shoulders grooves and the sleeve windows, when the spool rotates in the sleeve. Noise and vibration will be induced if cavitation phenomena exist in the valve ports. Severely, the solid materials of valve ports will be subject to cavitation erosion, and the fluid through the valve ports will be discontinuous. As a result, the working characteristics of valve-controlled cylinder will be deteriorated. In this paper, the commercial CFD (Computational Fluid Dynamics) software FLUENT6.3 is used to simulate the flow field inside the digital valve, and reveal the changing rules of the cavitation. Simulation results show cavitation phenomena occur in the lower pressure side in the imminent closure and last a period of time after the closure of the valve ports. However, cavitation phenomena produced in the spool shoulders grooves is different from that in the sleeve windows, such as the speed of cavitation generated, diffusion area and the duration of cavitation. This work provides some useful reference for optimizing the valve structure and reducing cavitation phenomena.
机译:当阀芯在套筒中旋转时,高频电动液压数字阀(简称数字阀)通过阀芯的周期性开关来实现其功能,阀芯形成在阀芯肩部凹槽和套筒窗口之间。如果阀端口中存在气蚀现象,则会产生噪音和振动。严重地,阀端口的固体材料会受到气蚀的侵蚀,并且流经阀端口的流体将是不连续的。结果,阀控缸的工作特性将恶化。在本文中,使用商用CFD(计算流体动力学)软件FLUENT6.3来模拟数字阀内部的流场,并揭示气蚀的变化规律。模拟结果表明,气穴现象发生在即将关闭的低压侧,并在阀口关闭后持续一段时间。但是,在阀芯台肩凹槽中产生的气蚀现象与在套筒窗中产生的气蚀现象不同,例如产生的气蚀速度,扩散面积和气蚀持续时间。这项工作为优化阀门结构和减少气蚀现象提供了一些有用的参考。

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