Simulation and validation of a wobble plate pump with a focus on check valve dynamics

Samuel Kätnell, A. Dell’Amico, Liselott Ericson
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Abstract

Digital hydraulic piston pumps that use electrically controlled on/off valves to individually control the flow from each piston is a promising technique as these pumps are highly efficient at part displacement and respond quickly. However, digital pumps can still use check valves on the inlet, a fact that makes analysing wobble plate pumps (WPP) and their check valves interesting. Here, we measured the cylinder pressures of a WPP and compared these results with results from a simulation model we developed. In addition, we used linear analysis to investigate how different design parameters affect the valve’’s behaviour. From the measurements we found that the cylinder pressure is clearly affected the flow from other pistons and also that the system is not as stiff as expected. From the linear analysis, a criterion of how to design the valve to avoid instability was derived.
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以止回阀动力学为重点的摆动板泵仿真与验证
数字液压柱塞泵使用电控开关阀来单独控制每个活塞的流量,这是一种很有前途的技术,因为这些泵在局部位移时效率很高,响应速度也很快。然而,数字泵仍然可以在进口上使用止回阀,这一事实使得分析摆动板泵(WPP)及其止回阀变得有趣。在这里,我们测量了WPP的气缸压力,并将这些结果与我们开发的模拟模型的结果进行了比较。此外,我们使用线性分析来研究不同的设计参数对阀门性能的影响。从测量中,我们发现气缸压力明显受到其他活塞流量的影响,并且系统并不像预期的那样僵硬。从线性分析的基础上,推导出了避免失稳的设计准则。
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