Title of article
Analytical modeling, optimization and testing of a compound bridge-type compliant displacement amplifier
Author/Authors
Qingsong Xu، نويسنده , , Yangmin Li، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
18
From page
183
To page
200
Abstract
This paper investigates a flexure-based compound bridge-type (CBT) displacement amplifier for piezoelectric drives. In addition to the advantages of large amplification ratio and compact size, the CBT amplifier has a larger lateral stiffness and is more suitable for actuator isolation and protection than the ordinary bridge-type amplifier. An analytical model for amplification ratio calculation is established based on the Euler–Bernoulli beam theory because other simple theoretical approaches cannot predict the ratio properly. The reason why those approaches fail is discovered by resorting to the elastic model. The input stiffness and resonance frequency of the amplifier are also analytically modeled and verified by finite-element analysis (FEA). The derived models are utilized to optimize the amplifier structure through particle swarm optimization (PSO) to obtain a large resonance frequency subject to other performance constraints. The performances of the fabricated amplifier with optimized parameters are confirmed by both FEA simulation and experimental studies. Because an output displacement over 1 mm is achieved by the designed amplifier, it is employable to develop micro/nanopositioning stages with a cubic millimeter sized workspace.
Keywords
Mechanical amplifier , Finite-element analysis , Compliant mechanisms , Piezoelectric actuation , Flexure hinges , Optimum design
Journal title
Mechanism and Machine Theory
Serial Year
2011
Journal title
Mechanism and Machine Theory
Record number
1164366
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