Nonlinear vibrations and stability of aerostatic bearing
Date issued
2008
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
University of West Bohemia
Abstract
Bearings based on aerostatic principle belong to the new machine elements advantageous for low- and high-speed
applications, but their dynamic and stability properties are not yet sufficiently known. This paper presents a new
elaborated method and gained results of theoretical investigation of dynamic properties of aerostatic bearing in
general dimensionless form. It is aimed also as a supporting tool for diagnostic and identification methods used
at developing of new bearings proposed by TECHLAB, Prague for industrial applications. Mathematical model
expresses nonlinear and evolutive properties in the entire area of bearing clearance, contains sufficient number
of free parameters in functions of restoring and damping forces and can therefore describe all types of motions
occurring in gas bearings as periodic, quasi-periodic, including beats and instability, which can leads to chaotic
and self-excited vibrations. The influence of non-diagonal elements of stiffness and dampingmatrices of linearized
model on the spectral properties and the stability of system is investigated, too.
Description
Subject(s)
strojní součásti a spoje, nelineární systémy, simulace a modelování, rotorové soustavy
Citation
Applied and Computational Mechanics. 2008, vol. 2, no. 1, p. 335-346.