Modelling Of Solenoid Actuated Fast Switching Valve For Digital Hydraulic Machines

A. Matbouei, M. Michael Bech, O. Torben Andersen
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引用次数: 1

Abstract

this paper investigates a solenoid actuator performance used for switching a valve used in Digital Displacement Machines (DDM), which is a developing fluid power technology that has rigorous valve requirements for obtaining a high efficiency including milli-second range switching time. The objective of the paper is to develop and validate a computational model, which is describing the actuator and the valve behavior. In order to estimate the switching time of the valve, a coupled simulation method is established. A transient electro-magnetic finite-element-analysis including moving mesh configuration is coupled to a dynamic motion interface, which includes a group of ordinary differential equations defining the movement of the valve plunger. In this model, the spring force, which lets the valve to open passively is coupled with the electromagnetic actuator force. Then, the results of the simulation are compared against measurements results obtained from a set of experiments based on a valve prototype. Comparisons of current and plunger position show that the model describes both the actuator and the valve motion very well.
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数字液压机电磁驱动快速开关阀的建模
数字位移机(DDM)是一种新兴的流体动力技术,它对阀门的切换效率要求很高,包括毫秒范围内的切换时间。本文的目的是开发和验证一个计算模型,该模型描述了执行器和阀门的行为。为了估计阀门的开关时间,建立了一种耦合仿真方法。将包含运动网格结构的瞬态电磁有限元分析与包含一组定义阀柱塞运动的常微分方程的动态运动界面相耦合。在该模型中,使阀门被动开启的弹簧力与电磁执行器力耦合。然后,将仿真结果与基于阀门样机的一组实验结果进行了比较。电流和柱塞位置的比较表明,该模型能很好地描述执行器和阀门的运动。
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