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Research on Transient Response of the Rotor System with Flange Ring SFD

Research on Transient Response of the Rotor System with Flange Ring SFD
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摘要 The state of motion of inner and outer oil films of flange ring squeeze film damper (FRSFD) is analyzed in this paper. The integral expressions of transient oil film force under fixed coordinate system are developed for segmented squeeze film using Reynolds equation. The transient vibration behaviour of the rotor supported on FHSFD under impact loading of sudden unbalance and nonlinear oil film force is simulated successfully using the finite element-Wilsonθ method. Much discussion is given on the effect of oil film clearance and flange ring stiffness on transient vibration of rotor system. The simulation results show that tile expressions of transient oil film force presented in thes paper are feasible, vibration induced by impact loading can he greatly attenuated if oil film clearance and flange ring stiffness are designed properly. The state of motion of inner and outer oil films of flange ring squeeze film damper (FRSFD) is analyzed in this paper. The integral expressions of transient oil film force under fixed coordinate system are developed for segmented squeeze film using Reynolds equation. The transient vibration behaviour of the rotor supported on FHSFD under impact loading of sudden unbalance and nonlinear oil film force is simulated successfully using the finite element-Wilsonθ method. Much discussion is given on the effect of oil film clearance and flange ring stiffness on transient vibration of rotor system. The simulation results show that tile expressions of transient oil film force presented in thes paper are feasible, vibration induced by impact loading can he greatly attenuated if oil film clearance and flange ring stiffness are designed properly.
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 1998年第3期5-9,共5页 哈尔滨工业大学学报(英文版)
关键词 TRANSIENT RESPONSE finite element-Wilson-θ method FRSFD Transient response, finite element-Wilson-θ method, FRSFD
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