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Experimental study of suppressing the unbalanced response vibration of rotor system with a G-type integral squeeze film damper 被引量:1

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摘要 Conventional squeeze film dampers have numerous challenges including lock up,bistable response and incoordinate precession.In order to resolve these nonlinear problems,a novel G-type integral squeeze film damper(GISFD)is proposed in this research.The experimental test rig is provided to investigate the rotor system with an unbalanced single disk.Numerical simulation results show that the structural design of GISFD is reasonable,which can ensure its safe and stable operation.The influence of different support stiffnesses on the first-order speed of the rotor system is analyzed.Experimental results show that GISFD can effectively suppress the unbalanced response vibration of the rotor.In a certain range,it is found that the suppression effect of GISFD increases with the increase in the kinematic viscosity of the damping fluid.When the silicone oil with kinematic viscosity coefficients v=30.0 cm^(2)/s is employed,the vibration reduction of GISFD is approximately 71.51%.Furthermore,the experimental results show that with the increase of the unbalance,there is a linear relationship between the unbalance and the corresponding amplitude of the unbalanced response.It is concluded that GISFD has excellent linear damping characteristics and reduces the sensitivity of the rotor system to the unbalanced mass.
作者 Yan Wei He Lidong Zhang Yufei Zhang Yipeng Jia Xingyun 闫伟;He Lidong;Zhang Yufei;Zhang Yipeng;Jia Xingyun(Beijing Key Laboratory of Health Monitoring and Self-Recovery for High-End Mechanical Equipment,Beijing University of Chemical Technology,Beijing 100029,P.R.China)
出处 《High Technology Letters》 EI CAS 2021年第1期1-9,共9页 高技术通讯(英文版)
基金 Supported by the National Science and Technology Major Project(No.2017-Ⅳ-0010-0047) the Fundamental Research Funds for the Central Universities(No.JD2003)。
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