A 2-DOF thin-plate piezoelectric actuator using traveling-wave and radial-bending hybrid vibration modes for multispectral imaging

To address the integration requirements of multispectral imaging for a miniaturized multi-degree-of-freedom (DOF) actuator, this study proposes a 2-DOF thin-plate piezoelectric actuator (TPPA). A proposed multiplexed excitation strategy for spatially arranged piezoelectric ceramics independently excites circumferential traveling waves and radial-bending hybrid modes in a thin-plate stator, enabling decoupled rotary and linear motions. The finite element method is utilized to analyze the driving trajectories by adjusting geometric parameters. Subsequently, a prototype measuring 34 × 34 × 6 mm 3 with a mass of 7.2 g was fabricated. Vibration characterization tests confirmed the successful modal excitation and design feasibility. Experimental results indicate that the maximum linear and rotary speeds, output force, and torque reach 148.3 mm/s, 223.8 RPM, 196 mN, and 0.644 mN·m, respectively, alongside displacement resolutions of 0.24 μm and 19.64 μrad in burst mode. Furthermore, integrating the TPPA into a filtering-focusing mechanism successfully demonstrated spectral channel switching and chromatic focal shift compensation. Focused imaging tests across four spectral bands confirmed the practical capability of the mechanism, proving that decoupled 2-DOF control significantly improves multispectral imaging quality. This study provides a compact actuation solution for the integration of multispectral imaging mechanisms.

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Publication Details

Journal
Mechanical Systems and Signal Processing
Published
2026-09-30
DOI
https://doi.org/10.1016/j.ymssp.2026.115034
Primary Topic
Piezoelectric Actuators and Control
Type
article
Field-Weighted Citation Impact
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article

A 2-DOF thin-plate piezoelectric actuator using traveling-wave and radial-bending hybrid vibration modes for multispectral imaging

Yingzhi Wang, Jie Deng, Bingwei Zhang, Yingxiang Liu et al.
Mechanical Systems and Signal Processing
Piezoelectric Actuators and Control
article

A 2-DOF thin-plate piezoelectric actuator using traveling-wave and radial-bending hybrid vibration modes for multispectral imaging

Yingzhi Wang, Jie Deng, Bingwei Zhang, Yingxiang Liu, Weishan Chen, Kai Wu
article en

Abstract

To address the integration requirements of multispectral imaging for a miniaturized multi-degree-of-freedom (DOF) actuator, this study proposes a 2-DOF thin-plate piezoelectric actuator (TPPA). A proposed multiplexed excitation strategy for spatially arranged piezoelectric ceramics independently excites circumferential traveling waves and radial-bending hybrid modes in a thin-plate stator, enabling decoupled rotary and linear motions. The finite element method is utilized to analyze the driving trajectories by adjusting geometric parameters. Subsequently, a prototype measuring 34 × 34 × 6 mm 3 with a mass of 7.2 g was fabricated. Vibration characterization tests confirmed the successful modal excitation and design feasibility. Experimental results indicate that the maximum linear and rotary speeds, output force, and torque reach 148.3 mm/s, 223.8 RPM, 196 mN, and 0.644 mN·m, respectively, alongside displacement resolutions of 0.24 μm and 19.64 μrad in burst mode. Furthermore, integrating the TPPA into a filtering-focusing mechanism successfully demonstrated spectral channel switching and chromatic focal shift compensation. Focused imaging tests across four spectral bands confirmed the practical capability of the mechanism, proving that decoupled 2-DOF control significantly improves multispectral imaging quality. This study provides a compact actuation solution for the integration of multispectral imaging mechanisms.

Mechanical Systems and Signal ProcessingVol. 260
Harbin Institute of Technology (CN), State Key Laboratory of Robotics and Systems (CN)
National Natural Science Foundation of China, State Key Laboratory of Mechanical System and Vibration, National University's Basic Research Foundation of China
Affordable and clean energy
Openalex Percentile: Top 17%
Piezoelectric Actuators and Control
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