Structural design of piezoelectric actuator considering polarization direction and continuous approximation of material distribution

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초록

In the design of piezoelectric actuator the concept of compliant mechanism combined with piezoelectric materials has been used to magnify either geometric or mechanical advantage. The polarization of piezoelectric materials is considered to improve actuation since the piezoelectric polarization has influences on the performance of the actuator. The topology design of compliant mechanism can be formulated as an optimization problem of material distribution in a fixed design domain and continuous approximation of material distribution(CAMD) method has demonstrated its effectiveness to prevent the numerical instabilities in topology optimization. The optimization problem is formulated to maximize the mean transduction ratio subject to the total volume constraints and solved using a sequential linear programming algorithm. The performance improvement of Moonie actuator design confirms an effect of polarization direction and CAMD.

키워드

Continuous approximation of material distributionHomogenization design methodPolarizationSimple isotropic material with penalizationTopology optimizationApproximation theoryOptimizationPiezoelectric devicesPiezoelectric materialsPolarizationStructural designContinuous approximationHomogenization design methodMaterial distributionSimple isotropic materialsTopology optimizationActuators
제목
Structural design of piezoelectric actuator considering polarization direction and continuous approximation of material distribution
저자
Lim, Young SeokMin, Seung jaeNishiwaki, Shinji
DOI
10.4028/www.scientific.net/KEM.326-328.1407
발행일
2006-12
유형
Conference Paper
저널명
Key Engineering Materials
326-328 II
페이지
1407 ~ 1410