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Experimental characterisation of a piezoelectrically actuated force amplifier using optical and self-sensing methods

  • In this work, we characterise a flexural mechanical amplifier, which is used for the realisation of a miniaturised piezoelectric inchworm motor designed for large force (some N) and stroke (tens of mm) operation as it is required e.g., for medical implants. The characterisation is based on high precision optical displacement measurements and a force self-sensing approach. An optically measured displacement of 292 nm in lateral direction and 910 nm in vertical direction of the flexural mechanical amplifier has been obtained, corresponding to a deflection attenuation factor of 3.1. Piezoelectric self-sensing of force was used to determine a force amplification factor of 3.43 from the mechanical oval structure.

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Metadaten
Author:Sonja Müller, Stefan J. Rupitsch, Ulrich MeschederORCiDGND
URL:https://ieeexplore.ieee.org/document/9899222
ISBN:978-3-8007-5894-4
Parent Title (English):ACTUATOR 2022; International Conference and Exhibition on New Actuator Systems and Applications, June 29-30, 2022, Mannheim, Germany
Publisher:VDE
Document Type:Conference Proceeding
Language:English
Year of Completion:2022
Release Date:2022/12/19
Page Number:4
First Page:274
Last Page:277
Open-Access-Status: Closed Access 
Licence (German):License LogoUrheberrechtlich geschützt