DocumentCode
1461813
Title
Oscillation propagating in non-contact linear piezoelectric ultrasonic levitation transporting system---from solid state to fluid media
Author
Li, Xianghua ; Sun, Yuntao ; Chen, Chao ; Zhao, Chunsheng
Author_Institution
Precision Driving Lab., Nanjing Univ. of Aeronaut. & Astronaut., Nanjing, China
Volume
57
Issue
4
fYear
2010
fDate
4/1/2010 12:00:00 AM
Firstpage
951
Lastpage
956
Abstract
Non-contact ultrasonic motors (USM) show potential for future use, especially in the industrial fields because of its simple structure and quick response. It is therefore important to comprehensively understand their theoretical background so as to push this research forward. In this study, we shall fully explain and deduce the driving mechanism of a linear ultrasonic levitation transporting system. Oscillation equations from the initial exciting Langevin transducer and flexural traveling wave propagation on the linear guide were first established. Then the squeezing fluid movement between the linear guide and the levitating slider was analyzed. Next, after being excited by the progressing wave under corresponding boundary conditions, the related tangential velocity of the middle flow field was obtained. Finally, the validated experiment was set up to test slider velocity.
Keywords
boundary layers; confined flow; oscillations; piezoelectricity; ultrasonic effects; ultrasonic motors; Langevin transducer; USM; driving mechanism; flexural traveling wave propagation; fluid media; levitating slider; linear guide; nocontact ultrasonic motors; noncontact linear piezoelectric ultrasonic levitation transporting system; oscillation equations; oscillation propagation; slider velocity; solid state; squeezing fluid movement; Boundary conditions; Equations; Levitation; Solid state circuits; Testing; Ultrasonic transducers;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2010.1499
Filename
5442889
Link To Document