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Force-deflection behavior of piezoelectric C-block actuator arrays

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Published under licence by IOP Publishing Ltd
, , Citation Andrew J Moskalik and Diann Brei 1999 Smart Mater. Struct. 8 531 DOI 10.1088/0964-1726/8/5/302

0964-1726/8/5/531

Abstract

C-blocks are unique piezoelectric building blocks which can be combined in series or parallel to generate tailorable performance and exploit the advantages of bender and stack architectures. This paper presents a complete theoretical model that predicts the force-deflection behavior for any generic C-block actuator array configuration. An experimental investigation with five case studies is described that validates the model over a broad range of actuator prototypes and performance. This study characterizes the sensitivity of this class of actuator array with respect to material, geometric, and configuration parameters. The paper concludes with a comparison of the generic C-block architecture to the current state of art on a basis of absolute measures such as maximum force, deflection, and work and normalized measures such as effective stress, strain, and work per actuator volume. From this, it is concluded that C-blocks are a highly efficient, mid-range actuation technology.

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