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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Using Steady Flow Force for Unstable Valve Design: Modeling and Experiments
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Using Steady Flow Force for Unstable Valve Design: Modeling and Experiments

机译:使用稳态流动力进行不稳定的阀门设计:建模和实验

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In single stage electrohydraulic valves, solenoid actuators are usually used to stroke the main spools directly. They are cheaper and more reliable than multistage valves. Their use, however, is restricted to low bandwidth and low flow rate applications due to the limitation of the solenoid actuators. Our research focuses on alleviating the need for large and expensive solenoids in single stage valves by advantageously using fluid flow forces. For example, in a previous paper, we proposed to improve spool agility by inducing unstable transient flow forces by the use of negative damping lengths. In the present paper, how steady flow forces can be manipulated to improve spool agility is examined through fundamental momentum analysis, CFD analysis, and experimental studies. Particularly, it is found that two often ignored components-viscosity effect and non-metering momentum flux, have strong influence on steady flow forces. For positive damping lengths, viscosity increases the steady flow force, whereas for negative damping lengths, viscosity has the tendency to reduce steady flow forces. Also, by slightly modifying the non-metering port geometry, the non-metering flux can also be manipulated to reduce steady flow force. Therefore, both transient and steady flow forces can be used to improve the agility of single stage electrohydraulic valves. Experimental results confirm the contributions of both transient and steady flow force in improving spool agility.
机译:在单级电动液压阀中,电磁执行器通常用于直接推动主阀芯。它们比多级阀更便宜,更可靠。但是,由于螺线管致动器的限制,它们的使用仅限于低带宽和低流量的应用。我们的研究重点是通过有利地利用流体流动力来减轻单级阀中大型和昂贵的螺线管的需求。例如,在以前的论文中,我们建议通过使用负阻尼长度引起不稳定的瞬态流动力来提高阀芯敏捷性。在本文中,通过基本动量分析,CFD分析和实验研究来研究如何操纵稳定的流动力以提高阀芯的敏捷性。特别是,发现两个经常被忽略的成分-粘度效应和非计量动量通量,对稳态流动力有很大的影响。对于正阻尼长度,粘度会增加稳态流量,而对于负阻尼长度,粘度会降低稳态流量。同样,通过略微改变非计量端口的几何形状,也可以控制非计量通量以减小稳定的流量。因此,瞬态和稳态流动力都可用于提高单级电动液压阀的敏捷性。实验结果证实了瞬态和稳态流动力对提高阀芯敏捷性的贡献。

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