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Dynamic response of a hydraulic servo-valve torque motor with magnetic fluids

机译:带有磁性流体的液压伺服阀扭矩电动机的动态响应

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摘要

As magnetic fluids (MF) show higher saturation magnetization and larger viscosity when exposed to a magnetic field, large damping forces or resistance will be exerted on the armature of a hydraulic servo-valve torque motor by magnetic fluids if they are filled into the working gaps of the motor. This paper focuses on the application of magnetic fluids in a hydraulic servo-valve torque motor, especially the influence of magnetic fluids on the dynamic response of the motor. After introducing the working principle of the torque motor with magnetic fluids, the dynamic mathematical models of the torque motor and magnetic fluids are presented. The torque working on the armature introduced by magnetic fluids is analyzed. In order to study the influence of magnetic fluids, dynamic response of the torque motor is simulated and tested when magnetic fluids are applied or not in the motor. Simulation and experimental results show an obvious influence of magnetic fluids on the dynamic response of the hydraulic servo-valve torque motor.
机译:由于磁性流体(MF)暴露于磁场中时会表现出较高的饱和磁化强度和较大的粘度,因此,如果将磁性流体填充到工作间隙中,则会通过液压油将较大的阻尼力或阻力施加到液压伺服阀转矩马达的电枢上电机。本文着重介绍电磁流体在液压伺服阀转矩电动机中的应用,特别是电磁流体对电动机动态响应的影响。在介绍了带磁流体的转矩电动机的工作原理后,给出了转矩电动机和磁流体的动力学数学模型。分析了电磁流体在电枢上产生的转矩。为了研究磁性流体的影响,模拟和测试了扭矩电动机的动态响应,无论是否在电动机中施加了磁性流体。仿真和实验结果表明,磁流体对液压伺服阀转矩电机的动态响应有明显影响。

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