Dynamics of on-board rotors on finite-length journal bearings subject to multi-axial and multi-frequency excitations: numerical and experimental investigations
نویسندگان
چکیده
On-board rotating machinery subject to multi-axial excitations is encountered in a wide variety of high-technology applications. Such combined with mass unbalance forces play considerable role their integrity because they can cause parametric instability and rotor–stator interactions. Consequently, predicting the rotordynamics such machines crucial avoid triggering undesirable phenomena or at least limiting impacts. In this context, present paper proposes an experimental validation numerical model rotor-shaft-hydrodynamic bearings system mounted on moving base. The based finite element approach Timoshenko beam elements having six degrees freedom (DOF) per node account for bending, torsion axial motions. Classical 2D rectangular are also employed obtain pressure field acting inside hydrodynamic bearing. formulation variational inequality leading Reynolds boundary conditions. carried out rotor test rig, designed, built, instrumented 6-DOF hydraulic shaker. rotor’s dynamic behavior motions assessed base consisting mono- translations rotations harmonic, random chirp sine profiles. comparison predicted measured results achieved terms shaft orbits, full spectrums, transient history responses power spectral densities very satisfactory, permitting proposed.
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ژورنال
عنوان ژورنال: Mechanics & Industry
سال: 2021
ISSN: ['2257-7750', '2257-7777']
DOI: https://doi.org/10.1051/meca/2021034