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首页> 外文期刊>JFPS International Journal of Fluid Power System >Fabrication and Evaluation of Hydraulic Particle Excitation Valve Vibrated Perpendicularly to Direction of Flow Path
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Fabrication and Evaluation of Hydraulic Particle Excitation Valve Vibrated Perpendicularly to Direction of Flow Path

机译:垂直于流路方向振动的液压颗粒激励阀的制作和评估

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We introduce a new particle excitation control valve driven by the vibration from a direction different than that of the previous particle excitation control valve. Conventional small hydraulic servo valves have a few disadvantages, such as a complex structure and waste of hydraulic energy. To solve these disadvantages, a small hydraulic control valve using a piezoelectric vibrator was studied. We confirm that the proposed control valve was operated with a low viscosity fluid in our previous research. However, the control valve was not operated with a high viscosity fluid as the force required to open the valve increases owing to increase in the viscosity. In this paper, a new prototype valve driven by the vibration perpendicular to the direction of flow was fabricated to achieve valve operation with a common hydraulic oil, and the characteristics of the valve due to a change in the valve seat shapes were also evaluated. As a result, we found the optimum value of the taper angle of the valve seat. When the taper angle of the valve seat is 100°, the prototype valve can be opened by a lesser voltage than the other taper angles. In addition, when the silicone oil was used as the working fluid with a kinematic viscosity of 30 mm2/s, approximately equal to the kinematic viscosity of the common hydraulic oil, we succeeded in opening the valve at 0.8 MPa. Because the previous particle excitation valve could not be opened in a high viscosity working fluid, the present results indicate a possibility for operating the proposed valve with the common hydraulic oil.
机译:我们引入了一种新的粒子激励控制阀,该阀由与前一个粒子激励控制阀不同方向的振动驱动。常规的小型液压伺服阀具有一些缺点,例如结构复杂和浪费液压能。为了解决这些缺点,研究了使用压电振动器的小型液压控制阀。我们在先前的研究中确认所提议的控制阀使用低粘度流体进行操作。然而,由于粘度的增加,打开阀所需的力增加,因此控制阀未使用高粘度的流体进行操作。在本文中,制造了一种新的原型阀,该阀由垂直于流动方向的振动驱动,以实现使用普通液压油的阀操作,并且还评估了由于阀座形状变化而引起的阀特性。结果,我们发现了阀座锥角的最佳值。当阀座的锥角为100°时,可以用比其他锥角小的电压打开原型阀。另外,当将硅油用作运动粘度为30 mm2 / s(大约等于普通液压油的运动粘度)的工作流体时,我们成功地在0.8 MPa下打开了阀门。因为先前的颗粒激发阀无法在高粘度工作流体中打开,所以当前结果表明可以使用普通液压油来操作所提出的阀。

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