DocumentCode
3603638
Title
Transfer Path Analysis of Structural Vibration on Propulsion Motor
Author
Hu Yu ; Lei Tian ; GuoBing Zhang
Author_Institution
Wuhan Inst. of Marine Electr. Propulsion, Wuhan, China
Volume
51
Issue
11
fYear
2015
Firstpage
1
Lastpage
3
Abstract
Reduction of vibration noise of propulsion motor, which is the main excitation source of ships, is of great significance for improving the acoustic stealth performance of ships. An established motor feet vibration transfer path analysis (TPA) model is used to determine the primary excitation source and transfer path. Hammering method is used to test the transfer function of the path and collect the response of reference and target points in the operation conditions. The TPA is carried out based on the experiment to identify the equivalent exciting force and to calculate the path contribution amount. The results show that in the frequency range of 1-1000 Hz, the vibration acceleration-level error of the synthetic response and the measured response is <;3 dB, and hence the model is accurate and reliable. Recognized equivalent excitation force can be used for the simulation of excitation load. Contribution analysis results indicate the direction for structural improvements that have practical value.
Keywords
electric motors; marine propulsion; military vehicles; reliability; ships; structural engineering; vibrations; Hammering method; equivalent exciting force; frequency 1 Hz to 1000 Hz; motor feet vibration TPA model; primary excitation source; propulsion motor vibration noise reduction; reliability; ship acoustic stealth performance; ship excitation source; structural vibration transfer path analysis; synthetic response vibration acceleration-level error; Analytical models; Force; Force measurement; Propulsion; Stator cores; Transfer functions; Vibrations; Contribution Analysis; Contribution analysis; Load Identification; Propulsion Motor; Transfer Path Analysis; load identification; propulsion motor; transfer path analysis (TPA);
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2015.2453212
Filename
7154479
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