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Dynamic coefficients of the coupled journal and thrust bearings considering five degrees of freedom for a general rotor-bearing system

Authors
Jang, GunheeLee, SanghoonKim, Hakwoon
Issue Date
Oct-2007
Publisher
ASME
Citation
2007 Proceedings of the ASME/STLE International Joint Tribology Conference, IJTC 2007, v.PART A, pp.249 - 251
Indexed
SCOPUS
Journal Title
2007 Proceedings of the ASME/STLE International Joint Tribology Conference, IJTC 2007
Volume
PART A
Start Page
249
End Page
251
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/172221
DOI
10.1115/IJTC2007-44223
ISSN
0000-0000
Abstract
This paper proposes a method to calculate the stiffness and the damping coefficients of the coupled journal and thrust bearings considering tilting motion. The Reynolds equations and their perturbation equations are derived by linearization of bearing reaction with respect to the general five degrees of freedom, i.e. the tilting displacement and angular velocity as well as the translational displacement and velocity. Reynolds equations and their perturbation equations are transformed to the finite element equations by considering the continuity of pressure and flow at the interface between the journal and the thrust bearings. It also includes the Reynolds boundary condition in the numerical analysis to simulate the cavitation phenomena. The stiffness and the damping coefficients of the proposed method are compared with those of the numerical differentiation of the loads with respect to finite displacements and velocities of bearing center. It shows that the proposed method can calculate the dynamic coefficients of a coupled journal and thrust bearing more numerically stable and computationally efficient than the differentiation method.
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