2021
DOI: 10.1063/5.0049045
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Mechanism of temperature-induced zero drift on electro-hydraulic servo valve

Abstract: An electro-hydraulic servo valve is objectively asymmetrical in the process of fabrication and assembly, and the zero position is the result of comprehensive adjustment. During the use of the electro-hydraulic servo valve, the rapid rise of temperature will lead to the zero drift phenomenon and the change in the flow state of the servo valve. With the change in temperature, the thicknesses of air gaps, the size of the orifice, the flow coefficient, the armature’s arm of force, the permanent magnets’ reluctance… Show more

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Cited by 10 publications
(4 citation statements)
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“…The zero-drift as a phenomenon has been studied in adjacent areas of engineering (e.g. [16,17]) or as a partial aspect of specific methods (e.g. [18,19]) related to interferometry.…”
Section: Zero-drift In Interferometric Measurementmentioning
confidence: 99%
“…The zero-drift as a phenomenon has been studied in adjacent areas of engineering (e.g. [16,17]) or as a partial aspect of specific methods (e.g. [18,19]) related to interferometry.…”
Section: Zero-drift In Interferometric Measurementmentioning
confidence: 99%
“…According to Yan et al 24 and Ma et al, 25 the effect of upper and lower pole pieces and armature in the magnetic circuit are neglected. The four air gap flux of torque motor are…”
Section: Temperature Drift Model Of Torque Motormentioning
confidence: 99%
“…To analyze the mechanism of temperature action on the deflector jet servo valve, the impact of each route on the control accuracy of the deflector jet servo valve under temperature variation is first considered separately. According to Mao, 23 the range of simulation temperature is set to 20°C–250°C, and the simulation is carried out using the temperature drift model of deflector jet servo valve at the command current of 1 mA; the parameters are shown in Table 4, Table 5 and Ma et al 25…”
Section: Numerical Simulation and Analysismentioning
confidence: 99%
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