Characterization of the linear and non-linear dynamic performance of RAINBOW actuator

S. Chandran, V. Kugel, L. E. Cross
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引用次数: 10

Abstract

In the last few years the technology of using piezoelectric actuators for applications requiring large displacements such as loudspeakers and noise-cancelling devices has undergone significant development. RAINBOW (Reduced and INternally Biased Wafer) is a novel high displacement actuator and knowledge of its dynamic response is indeed essential for these applications. In an attempt to characterize the RAINBOW, measurements were made of important lumped mechanical and electrical parameters. Cantilevers of different dimensions were cut from RAINBOW discs. The data include measurements of the mechanical displacement (under both quasistatic conditions and electromechanical resonance), hysteresis, mechanical quality factor and the electrical impedance of RAINBOW cantilevers. These measurements demonstrate the macroscopic effects of the sinusoidal applied electric field and indicate significant non-linearities in the RAINBOW device.
RAINBOW作动器线性和非线性动态性能的表征
在过去的几年中,将压电致动器用于需要大位移的应用(如扬声器和降噪装置)的技术取得了重大发展。RAINBOW(减小和内部偏置晶圆)是一种新型的高位移致动器,其动态响应知识对于这些应用确实至关重要。在尝试表征彩虹时,测量了重要的集总机械和电气参数。不同尺寸的悬臂从RAINBOW圆盘上切割而成。数据包括了RAINBOW悬臂梁的机械位移(准静态条件下和机电共振条件下)、滞后、机械品质因子和电阻抗的测量。这些测量证明了正弦外加电场的宏观效应,并表明RAINBOW器件中存在显著的非线性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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