Ds. Lee et Dh. Choi, Reduced weight design of a flexible rotor with ball bearing stiffness characteristics varying with rotational speed and load, J VIB ACOUS, 122(3), 2000, pp. 203-208
Citations number
11
Categorie Soggetti
Mechanical Engineering
Journal title
JOURNAL OF VIBRATION AND ACOUSTICS-TRANSACTIONS OF THE ASME
This paper presents an effective design approach for reducing the weight of
a flexible rotor in ball bearings with rotational speed and load dependent
stiffness characteristics under constraints on the system eigenvalues and
bearing fatigue life. Design variables are chosen to be the inner radii of
shaft elements, the positions of ball bearings, and the preloads on the bea
rings. The stiffness characteristics of high speed ball-bearings are comple
tely described as functions of applied loads and spin speed, and applied to
the dynamic behavior analysis of a rotor-bearing system. A transfer matrix
method is used to obtain eigenvalues of the system and an augmented Lagran
ge multiplier (ALM) method is employed as art optimization technique. A mul
ti-stepped rotor supported by two angular contact ball bearings is analyzed
and designed to show the speed and load dependent stiffness effect on the
system dynamic behavior and to demonstrate the effectiveness of the propose
d optimum design approach. The results show that the effect of the stiffnes
s on the system dynamic behavior is noticeable and that the suggested desig
n approach is effective. [S0739-3717(00)00803-5].