Rod-Shaped Linear Inertial Type Piezoelectric Actuator

Author:

Čeponis Andrius1,Jūrėnas Vytautas1,Mažeika Dalius2,Bakanauskas Vytautas3,Deltuvienė Dovilė4

Affiliation:

1. Laboratory of Robotics and Piezomechanics, Institute of Mechatronics, Kaunas University of Technology, K. Donelaičio Str. 73, 44249 Kaunas, Lithuania

2. Department of Information Systems, Faculty of Fundamental Sciences, Vilnius Gediminas Technical University, Sauletekio Avn., 10223 Vilnius, Lithuania

3. Department of Research and Development, Advanced Materials & Solutions, Prague Facility, CTS Corporation, 25101 Nupaky, Czech Republic

4. Department of Mathematical Statistics, Faculty of Fundamental Sciences, Vilnius Gediminas Technical University, Sauletekio Avn., 10223 Vilnius, Lithuania

Abstract

This article presents a numerical and experimental investigation of a novel rod-shaped linear piezoelectric actuator that consists of a square cross-section-shaped rod with eight piezo ceramic plates and a cylindrical guidance rail. The rod has a hollow cut made with an offset from the longitudinal axis of the symmetry. A cylindrical guidance rail is placed on one side of the rod, while T-shaped clamping is formed on the opposite side. The slider is mounted on the rail and is moved along it. The actuator is compact, making it possible to mount it directly on a printed circuit board (PCB) or in another device with limited mounting space, restricted mass, or actuator footprint. The operation of the actuator is based on the excitation of the first longitudinal vibration mode of the rod that induces in-plane bending vibration of the nodal zone of the rod due to a hollowed cut asymmetrically placed in the central part of the actuator. The actuator is driven by two sawtooth waveform electric signals with the phase difference of π that allows exciting longitudinal deformations of the rod and controls the reverse motion of the slider. The results of numerical investigations confirmed the operation principle of the actuator at the frequency of 59.72 kHz. The maximum displacement amplitude of the guidance rail in the longitudinal direction reaches up to 152.9 μm while the voltage of 200 Vp-p was applied. An experimental investigation of the actuator was made, and a maximum linear speed of 45.6 mm/s and thrust force of 115.4 mN was achieved.

Funder

Research Council of Lithuania according to the activity “Postdoctoral fellowships studies”

Publisher

MDPI AG

Subject

Control and Optimization,Control and Systems Engineering

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Critical Review on Inertially-Amplified Passive Vibration Control Devices;Archives of Computational Methods in Engineering;2024-01-04

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