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  5. Piezoelectric floating mass transducer as micro actuator working with magnetorheological elastomer

Publication details

Type
Article
Subtype
Research article
Authors / Creators
Rusinek, RafaƂ  

Lenci, Stefano  
PBN affiliation
mechanical engineering
Journal or series
Journal of Sound and Vibration
eISSN
1095-8568
Date
2025
Volume
619
DOI
10.1016/j.jsv.2025.119388

Abstracts and keywords

Abstract (EN)

This study analyzes the application of a piezoelectric floating mass transducer (FMT) combined with a magnetorheological elastomer (MRE) for exciting the ossicular chain and general mechanical systems. The results highlight the effectiveness of the FMT in inducing vibrations, further enhanced by the adaptive properties of the MRE, making it a promising option for broader engineering and biomedical applications, including hearing restoration devices. The study confirms that resonance tuning and the magnetic field-dependent properties of the MRE are crucial for optimizing vibration performance, significantly affecting energy transfer, while the MRE provides additional control over stiffness and damping. Compared to conventional actuators, the FMT-MRE system offers advantages in terms of frequency adaptability, though challenges remain due to nonlinear behaviors induced by MRE hysteresis. The full practical implementation is limited by the occurrence of irregular vibrations and bistability under high-voltage excitations. Firstly, a simplified 1-degree-of-freedom pure MRE system modeled with the Bouc–Wen component is analyzed at low and high excitation frequency. Next, application for the middle ear implants is studied in case of linear and nonlinear system.

Keywords EN
piezoelectric floating mass transducer
middle ear implant
magnetorhelogical elastomer
Bouc–Wen hysteresis
piezoelectric actuator

Additional information

Version
Version of Record
Publication time
at publication
Related dataset
https://hdl.handle.net/20.500.14629/18823

Project information

Project description
OPUS
Project identifier
2024/53/B/ST8/03778
Funding Institution
Narodowe Centrum Nauki (NCN)
Rusinek, R., & Lenci, S. (2025). Piezoelectric floating mass transducer as micro actuator working with magnetorheological elastomer. Journal of Sound and Vibration, 619, 1–22. https://doi.org/10.1016/j.jsv.2025.119388
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