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Characteristics of a piloted digital flow valve based on flow amplifier

机译:基于流量放大器的先导式数字流量阀的特性

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Hydraulic switching techniques which have less throttling losses, good repeatability and can be controlled intelligently have been largely developed. The biggest challenge is the hydraulic fluctuation. It is generated in the process of opening and closing the valve. A two-stage digital flow valve operated by Pulse Width Modulation (PWM) signal is studied in this paper. The main stage is cartridge valve based on flow amplifying principle; the pilot stage is high-speed on/off valve. The fluctuation characteristic of the digital flow valve is investigated using theoretical derivation and simulation analysis. The results show that the outlet flow fluctuation is influenced by many parameters such as the frequency and duty ratio of PWM signal, the volume of control chamber, etc. It can be weakened through the proper design of these parameters. Although the fluctuation exists, the mean outlet flow can be proportionally controlled by adjustment of the duty ratio of the control signal.
机译:节流损失少,可重复性好并且可以智能控制的液压开关技术已经得到了很大的发展。最大的挑战是水力波动。它是在打开和关闭阀门的过程中产生的。本文研究了一种通过脉宽调制(PWM)信号操作的二级数字流量阀。主要阶段是基于流量放大原理的插装阀。先导级是高速开关阀。使用理论推导和仿真分析研究了数字流量阀的波动特性。结果表明,出口流量波动受许多因素的影响,例如PWM信号的频率和占空比,控制室的体积等。可以通过适当设计这些参数来减小出口波动。尽管存在波动,但是可以通过调节控制信号的占空比来按比例控制平均出口流量。

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