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A Precision Rotational Device using Piezoelectric Elements and Impact Drive Mechanism

Aleksey-Deson Ten, Bong-Gon Ryu, Jong Up Jeon
JKSPE 2010;27(1):49-57.
Published online: January 1, 2010
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This paper describes the design, construction, and fundamental testing of a precision rotational device that utilizes piezoelectric elements as a source of driving force and impact drive mechanism as a driving principle. A novel device structure is designed and the numerical simulations about the static displacement, stress distribution, and mode shape of the designed structure are performed. A fabricated rotational device has been rotated successfully by applying saw-shaped voltages to the piezoelectric elements. The one-step rotational angle was 0.44×10-3rad at the applied voltages of 80V. The angular velocities of the device were revealed to be increased as the driving frequency and voltage were respectively increased and the preload was decreased. The device has a feature that it can be translated as well as rotated. An experimental result shows that the device was translated by ±4.56㎛ maximum when the 120V sinusoidal voltages with a phase difference of 180° were respectively supplied to two piezoelectric elements.

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A Precision Rotational Device using Piezoelectric Elements and Impact Drive Mechanism
J. Korean Soc. Precis. Eng.. 2010;27(1):49-57.   Published online January 1, 2010
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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A Precision Rotational Device using Piezoelectric Elements and Impact Drive Mechanism
J. Korean Soc. Precis. Eng.. 2010;27(1):49-57.   Published online January 1, 2010
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