DocumentCode :
2317114
Title :
Mechanical equations of material damage and feature variation for vibration-based monitoring and diagnosis
Author :
Jianhua, Xiao
Author_Institution :
Meas. Inst., Henan Polytech. Univ., Jiaozuo
fYear :
2008
fDate :
21-24 April 2008
Firstpage :
1298
Lastpage :
1301
Abstract :
Based on additive decomposition of deformation gradient tensor, the vibration equations for vibration-based damage monitoring and diagnosis technology are formulated with intrinsic local rotation concept. It shows that the abnormal vibration is related with asymmetrical stress (which is completely determined by the local rotation angular). Once the vibration velocity is well measured, the damage evolution equation can be used to determine the required damage evaluation parameter. Some further discussion is given out for the cracking tip wave features, which forms the basis for sound mission based monitoring technology. Material feature variation equations are also formulated. So, this research supplies the essential mechanical equations for vibration-based monitoring and diagnosis.
Keywords :
acoustic signal processing; condition monitoring; mechanical engineering computing; vibrations; additive decomposition; asymmetrical stress; cracking tip wave features; deformation gradient tensor; feature variation; intrinsic local rotation concept; material damage; mechanical equations; vibration equations; vibration-based damage monitoring; Condition monitoring; Corona; Electrodes; Equations; Partial discharges; Power cables; Principal component analysis; Substations; Testing; Vibrations; abnormal vibration; asymmetrical stress; damage evolution; deformation tensor decomposition; effective constants; intrinsic local rotation; motion equation; rational mechanics; sound emission; symmetrical stress; vibration equation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Condition Monitoring and Diagnosis, 2008. CMD 2008. International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-1621-9
Electronic_ISBN :
978-1-4244-1622-6
Type :
conf
DOI :
10.1109/CMD.2008.4580214
Filename :
4580214
Link To Document :
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