DocumentCode :
1062653
Title :
A Novel Ferrofluidic Inclinometer
Author :
Andò, Bruno ; Ascia, Alberto ; Baglio, Salvatore ; Savalli, Nicolò
Author_Institution :
Univ. of Catania, Catania
Volume :
56
Issue :
4
fYear :
2007
Firstpage :
1114
Lastpage :
1123
Abstract :
Inertial transducers based on the use of ferrofluids as inertial mass can be of great interest due to their peculiarities and due to the advantages that they show when compared to traditional devices. Ferrofluids are special solutions of magnetic particles in a carrier liquid whose density and other physical features can be controlled by an external magnetic field. In this paper, the development of a ferrofluidic inclinometer, which exhibits a tunable operating range and a valuable metrological feature and an intrinsic robustness against inertial shocks, is presented. The device consists of one excitation coil and two sensing coils wound around a glass pipe where a drop of ferrofluid is contained in a water environment. The magnetic force, which is induced by the excitation coil, attracts the ferrofluidic mass in a position that depends on the device inclination. The voltage at the output of the two sensing coils is related to the ferrofluidic mass displacement and thus reflects the tilt to be measured. Analytical models, simulations, and experimental results are presented to demonstrate the suitability of the proposed approach.
Keywords :
angular measurement; coils; magnetic fields; magnetic fluids; magnetic particles; transducers; excitation coil; ferrofluidic inclinometer; inertial mass; inertial transducer; intrinsic robustness; magnetic field; magnetic particles; metrological feature; sensing coil; Analytical models; Coils; Electric shock; Glass; Magnetic fields; Magnetic liquids; Magnetic particles; Robustness; Transducers; Wounds; Characterization; ferrofluids; inclinometer; modeling;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2007.899870
Filename :
4276998
Link To Document :
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