2007
DOI: 10.1177/1045389x06072362
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Effect of Geometry on the Characteristics of a Drum Actuator

Abstract: This study presents a large displacement, piezoceramic and metal composite-based actuator, named drum piezoceramic-actuator. The drum actuator consists of a short, thick-walled steel cylinder sandwiched by two thin composite disks, which are fabricated from a brass disk bonded with one piezoceramic disk. The piezoceramic disk polarized in its thickness direction is of a large diameter to thickness ratio, thus, produces a large radial displacement under an applied voltage in the thickness direction, and consequ… Show more

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Cited by 6 publications
(1 citation statement)
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References 12 publications
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“…After bonding the unimorphs on the steel ring, the first resonance frequency of the PMC actuator is associated with the flextensional mode of the unimorphs. It depends on the geometry of the actuator, including the dimensions of the driving element and the metal cavity; for example, a larger cavity would give a lower resonance frequency of the actuator [12]. The first resonance frequency of the actuator can be measured by an impedance analyzer.…”
Section: Actuatorsmentioning
confidence: 99%
“…After bonding the unimorphs on the steel ring, the first resonance frequency of the PMC actuator is associated with the flextensional mode of the unimorphs. It depends on the geometry of the actuator, including the dimensions of the driving element and the metal cavity; for example, a larger cavity would give a lower resonance frequency of the actuator [12]. The first resonance frequency of the actuator can be measured by an impedance analyzer.…”
Section: Actuatorsmentioning
confidence: 99%