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A small three-way valve using particle excitation with piezoelectric transducers for hydraulic actuators

机译:一种小型三通阀,使用颗粒激发与压电传感器用于液压执行器

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摘要

Robots composed of hydraulic actuators have been utilized in various fields and at disaster sites. However, the hydraulic control system for multiple-degree-of-freedom mechanisms is large because such systems require many control components. The purpose of this research was to develop a small hydraulic flow control valve. This paper describes the fabrication and evaluation of a small three-way valve by particle excitation using a piezoelectric transducer. This valve consists of two transducers and can switch the inlet and outlet ports by applying an AC voltage of different driving frequencies to each transducer because each transducer has different resonant frequencies. The flow rate was controlled by applying a voltage to the piezoelectric transducer. We evaluated the vibration characteristics of the fabricated three-way valve. The vibration velocity exhibited peaks at 120 and 155kHz for the inlet and outlet port, respectively, and that of each transducer increased with the applied voltage. Therefore, this three-way valve can switch the opening port by changing the driving frequencies and continuously controlling the flow rate. As a result, we have succeeded in driving the novel small three-way valve.
机译:由液压执行器组成的机器人已经在各种领域和灾区使用。然而,用于多程度自由度机制的液压控制系统很大,因为这种系统需要许多控制部件。本研究的目的是开发一个小型液压流量控制阀。本文介绍了使用压电换能器通过颗粒激发的小三通阀的制造和评价。该阀门由两个换能器组成,并且由于每个换能器具有不同的谐振频率,可以通过向每个换能器施加不同的驱动频率的AC电压来切换入口和出口端口。通过向压电换能器施加电压来控制流速。我们评估了制造的三通阀的振动特性。振动速度分别在120和155kHz的入口和出口的峰值上显示出峰值,并且每个换能器的振动速度随施加的电压而增加。因此,该三通阀可以通过改变驱动频率并连续地控制流速来切换开口端口。因此,我们成功地推动了新型小型三通阀。

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