Publication | Open Access
Effects of different rub models on simulated rotor dynamics
17
Citations
1
References
1984
Year
Electric MachineEngineeringFluid MechanicsMechanical EngineeringSimulationRotor DynamicComputational MechanicsFriction ControlDry Friction TheoryMechanicsNumerical SimulationSystems EngineeringRheologyTurbine Engine RotorsHydrodynamic LubricationMechanical ModelingRotordynamicsPropulsionFluid MachineryDry Friction ModelMechanical SystemsDifferent Rub ModelsVibration Control
Using a direct integration, transient response rotor dynamics computer code, the response of turbine engine rotors to two different blade tip - seal interference rub models was studied. The first model, an abradable seal rub model, is based on an energy-loss-per-unit-volume theory (applicable to a ceramic turbine blade tip seal). The second, a smearin model, is based on viscous hydrodynamic theory (applicable to a metallic blade tip seal). The results from these two models were compared with those from a previously studied model based on dry friction theory. The abradable model was very senitive to small changes in the energy per unit volume, and once a threshold was exceeded, the rotor went into a backward whirl. The amplitude seemed to grow without limit. This was similar to the dry friction model when the coefficient of friction exceeded a particular threshold. The smearing model was not as sensitive to small changes in the viscosity, but a threshold viscosity was found. When it was exceeded, the rotor went into backward whirl, but the amplitude seemed to grow to a finite limit.
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