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Design Analysis of Water Hydraulic Digital Valve

机译:水液压阀设计分析

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Lubrication and sealing are the key research points in water hydraulic technology. A better seal is provided by the structure form of the poppet valve comparing to the spool valve, however, poorer linearity and control accuracy accompanies inevitably. Aiming at improving the control performance of poppet valves, the design of the water hydraulic digital valve is analyzed in this paper. A high speed digital valve is designed and controlled by PWM (Pulse-Width Modulation) and actuated by a piezoelectric ceramic stack with high frequency response and control stiffness. Another new design using poppet valves for digital bits is proposed to ensure enough seal ability and lower the cost of the valve, namely the multi-digit on-off valve. The simulation models of these two types of valves are built and the results show the different performances between the valves. The high speed digital valve is provided with high control accuracy and responsiveness. In contrast, large overshoot and oscillation are encountered during switching on the digits of the multi-digit on-off valve. Especially the switching process of the high digital bits requires to be regulated to reduce the large overshoot. The above analysis contributes to the improvement of lubrication and sealing in water hydraulic control valves and applications of water hydraulics in the industry.
机译:润滑和密封是水液压技术的关键研究点。由提升阀的结构形式提供更好的密封,但是与阀芯阀比较,然而,不可避免地伴随着较差的线性和控制精度。旨在提高提升阀的控制性能,本文分析了水液压数字阀的设计。通过PWM(脉冲宽度调制)设计和控制高速数字阀,并通过压电陶瓷堆,具有高频响应和控制刚度的压电陶瓷堆。建议使用采用提升阀进行数字位的另一个新设计,以确保足够的密封能力并降低阀门的成本,即多位开关阀。构建了这两种阀门的仿真模型,结果显示了阀之间的不同性能。高速数字阀具有高控制精度和响应性。相比之下,在开启多位开关阀的数字期间遇到大量的过冲和振荡。特别是高数字比特的切换过程需要被调节以减小大的过冲。以上分析有助于改善水液压控制阀润滑和密封,以及工业水液压系统的应用。

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