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Development of Cam-Drive Type Proportional Valve for Water Hydraulics

机译:凸轮驱动式水力比例阀的开发

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This paper describes the development of water hydraulic proportional valves. These valves are spool-type and the spool is driven by a positive cam mechanism with an appropriate motor, such as a stepping motor or servo motor, depending on the application. The cam is placed precisely between two cam followers so that no gap is left between the cam and followers. Accordingly, no return spring is required. The rotational angle of the cam and the displacement of the spool are linear. Mathematical models of static characteristics of the valves are derived. Experimental results for the static characteristics are also shown: internal leakage and pressure gain against spool displacement, flow rate characteristics with no load, and flow rate against load pressure. Although the spool overlaps with sleeve, no dead band was observed in flow rate characteristics with no load because of leakage passing through the clearance around the spool. In addition, the nonlinearity of spool displacement against the rotational angle of the cam was below 0.2% and hysteresis was hardly observed. Feedback control of the displacement of water hydrostatic bearings is conducted as an application of the developed valve.
机译:本文介绍了水压比例阀的发展。这些阀是滑阀类型,根据应用情况,滑阀由正凸轮机构驱动,并带有合适的马达,例如步进马达或伺服马达。凸轮正好放置在两个凸轮从动件之间,因此在凸轮和从动件之间不留间隙。因此,不需要复位弹簧。凸轮的旋转角度和线轴的位移是线性的。推导了阀门静态特性的数学模型。还显示了静态特性的实验结果:针对阀芯位移的内部泄漏和压力增益,无负载时的流量特性以及针对负载压力的流量。尽管阀芯与衬套重叠,但由于泄漏通过阀芯周围的间隙,因此在无负载的流量特性中未观察到死区。另外,阀芯位移相对于凸轮旋转角度的非线性低于0.2%,几乎没有观察到磁滞现象。对水静压轴承位移的反馈控制是根据开发的阀门进行的。

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