DocumentCode
619401
Title
Verification method of rotors instability measurement
Author
Mahdal, Miroslav ; Los, Jaroslav ; Zavadil, Jaromir
Author_Institution
Dept. of Control Syst. & Instrum., VSB - Tech. Univ. of Ostrava, Ostrava, Czech Republic
fYear
2013
fDate
26-29 May 2013
Firstpage
228
Lastpage
231
Abstract
This paper deals with a system for active rotor´s vibration control. A test stand Rotor-kit for testing of the effect of rotors instability has been assembled. This system enables to control journal bearings for suppressing instability caused by an oil film actively. As actuators the piezoactuators have been used. The system of Rotor-kit has been designed in order to test different types of shafts such as the basic test objects. Tested shafts have different properties and are made from different materials. In this paper we focus on the measurement of three types of shafts where two shafts are from the magnetic material and one from the non-magnetic material. The magnetic shafts are divided on the hollow shaft and filled shaft. The laboratory measurement for verification of deviation measurement (instability) were carried out. The measurement result is measured data comparison from three different types of sensors namely sensor of deviations (digital micrometer), sensor based on eddy current (inductive sensor) and sensor based on capacitive principle. These sensors are basic measurement components of the Rotor-kit system and for rotor´s instability suppressing is the verification of measurement results for used sensor types also very important.
Keywords
machine bearings; mechanical stability; micrometry; piezoelectric actuators; rotors; vibration control; vibration measurement; active rotor vibration control; capacitive principle; deviation measurement; digital micrometer; eddy current; inductive sensor; instability suppression; journal bearing control; laboratory measurement; magnetic material; nonmagnetic material; piezoactuators; rotor instability suppression; rotors instability measurement; sensor types; test stand rotor-kit; verification method; Acoustics; Actuators; Aerodynamics; Atmospheric modeling; Rotors; Stability analysis; Vibrations; Rotor-kit; instability; piezoactuator; rotor; sensor; shaft; vibration;
fLanguage
English
Publisher
ieee
Conference_Titel
Carpathian Control Conference (ICCC), 2013 14th International
Conference_Location
Rytro
Print_ISBN
978-1-4673-4488-3
Type
conf
DOI
10.1109/CarpathianCC.2013.6560543
Filename
6560543
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