Vibration Based Analysis of Defects in Rotating Shafts
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Abstract
The present study aims at the analysis of vibration responses of a horizontal rotor
supported on ball bearings and to develop a fault diagnosis system for rotor systems. The
sources of vibration in the rotor are the presence of different types of defects, which are
cracks in the shaft, bent shaft and misalignment of shafts. These defects are considered
with different severity level and their effect on vibration response has been analyzed using
response surface methodology.
This study gives designers a diagnostic tool for predicting the trends of vibration
conditions in a rotor bearing system for healthy and defective shaft conditions. The
devised tool has capability of quantifying the amplitude of vibration based on severity of
defects in shafts. In such cases, severe vibration has occurred in the system only due to
either large slant crack or due to high level of shaft speed. With the features available in
the devised diagnostic tool, the proposed model can be used for design, predictive
maintenance of a rotor bearing system and also for condition monitoring of high speed
rotating machines.
Description
me, MED
