液压减压机电致动系统直接致动大尺寸阀门

IF 0.7 Q4 ENGINEERING, MECHANICAL International Journal of Fluid Power Pub Date : 2021-11-20 DOI:10.13052/ijfp1439-9776.2312
Tobias Vonderbank, Pierre Marc Laßl Chavez, K. Schmitz
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引用次数: 1

摘要

通常在高功率液压系统中实现的大型阀门的致动需要大的致动力和冲程。目前,液压先导操作是最合适的解决方案和最先进的技术。然而,在某些应用中,机电阀门致动系统相对于普通先导操作系统具有优势。在这篇文章中,分析了机电致动器的应用在哪些情况下是有利的,以及为什么位移控制系统可能是这些应用之一。提出了一种用于位移控制系统的大型4/3通方向控制阀的新型机电阀驱动系统。这种新型执行系统的特点是对中弹簧进行液压释放。因此,弹簧仅在安全关键条件下活动,例如停电。由于致动器在每次位移过程中都不会抵抗弹簧力,因此所需的致动力会大幅减小。因此,可以使用普通的机电致动器。在断电的情况下,弹簧安全阀将停用,从而使储存的能量将滑阀置于中间位置。通过在标称尺寸为25、流速高达600升/分钟的阀门的制造演示器上进行的测量,检查了新型致动系统的性能。
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Direct Actuation of Large Sized Valves by a Hydraulically Relieved Electromechanical Actuation System
Extensive actuation forces and strokes are required for the actuation of large sized valves normally implemented in high power hydraulic systems. A hydraulically piloted operation is, for now, the most suitable solution and state of the art. However, there are some applications where electromechanical valve actuation systems are at advantage against common pilot operation systems. In this contribution it is analyzed in which cases the application of electro-mechanical actuators can be of advantage and why displacement-controlled systems may be one of these applications. A novel electromechanical valve actuation system for large sized 4/3-way directional control valves for the use in displacement-controlled systems is presented. This new actuation system is characterized by a hydraulic relief of the centering springs. Therefore, the springs are only active in safety-critical conditions, such as a power outage. Since the actuator is not working against the spring force during every displacement, the necessary actuation force is reduced drastically. Thus, common electromechanical actuators can be used. In case of a power outage, the spring relief is deactivated causing the stored energy to center the spool in its neutral position. The performance of the novel actuation system is examined through measurements conducted on a manufactured demonstrator for valves of nominal size 25 with a flow rate of up to 600 l/min.
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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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