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In-plane torsion of discal piezoelectric actuators with spiral interdigitated electrodes

机译:带螺旋叉指电极的盘形压电致动器的面内扭转

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Piezoceramic disks with spiral interdigitated electrodes (SIDEs) on their surfaces are proposed to produce in-plane torsion. With constant electrode spiral angle (Type I) and constant pitch between adjacent electrodes (Type II), two typical types of the SIDEs are developed and studied. Working principles of the discal piezoelectric actuators are explained and their static in-plane torsional deformations are formulated. Finite element simulations are used to investigate the static and dynamic properties of the actuators. Non-ideal distributions of electric fields appear serious suppressions on the actuating abilities, even worse for Type I actuator. Due to unsymmetric piezoelectric strains in the thickness direction, bending deformations of the disks are inevitable. Prototype actuators with fixed boundary at the radius of 12 mm are fabricated and tested. With a driving voltage of 400 Vp-p at 1 Hz, the maximum quasi-static in-plane torsional angles are 0.00458 degrees for Type I actuator and 0.00605 degrees for Type II actuator at the radius of 6 mm. With a driving voltage of 10 Vp-p, the vibration amplitudes at the radius of 6 mm are 0.00105 degrees at 86.0 kHz for Type I actuator and 0.00149 degrees at 84.4 kHz for Type II actuator at the first in-plane torsional vibration modes. Crown Copyright (C) 2015 Published by Elsevier B.V. All rights reserved.
机译:提出了在其表面上具有螺旋叉指电极(SIDE)的压电陶瓷盘,以产生平面内扭转。利用恒定的电极螺旋角(I型)和相邻电极之间的螺距(II型),开发并研究了两种典型的SIDE。说明了碟形压电致动器的工作原理,并阐述了它们的静态平面内扭转变形。有限元模拟用于研究执行器的静态和动态特性。电场的非理想分布似乎严重抑制了操动能力,对于I型作动器则更为严重。由于在厚度方向上的不对称的压电应变,盘的弯曲变形是不可避免的。制造并测试了在12 mm半径处具有固定边界的原型执行器。在1 Hz的驱动电压为400 Vp-p的情况下,半径为6 mm的I型执行器的最大准静态平面内扭转角为0.00458度,II型执行器的最大准静态平面内扭转角为0.00605度。在10 Vp-p的驱动电压下,在第一个面内扭转振动模式下,对于I型执行器,在86.0 kHz时,半径为6 mm时的振动幅度为0.00105度,对于II型执行器,在84.4 kHz时为0.00149度。 Crown版权所有(C)2015,由Elsevier B.V.保留所有权利。

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