Optically controlled variable damping system based on PLZT ceramic/ERF in rectangular microchannel

Yao Yao, Zhicheng Liu, Xinjie Wang
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Abstract

Variable damping control technology based on intelligent materials of electromagnetic excitation has been widely used in the field of (semi-) active vibration control and fluid control. Unfortunately, a major drawback is the electromagnetic noise interference and low response speed. In this paper, a new optically controlled variable damping system based on PLZT ceramic/electrorheological fluid (ERF) is proposed. The mathematical models of the photovoltage generated by PLZT ceramics and the pressure difference between the two ends of the microchannel are established and verified by numerical simulation in COMSOL Multiphysics. Meanwhile, with the increase of light intensity, liquid flow rate and decrease of microchannel height and width, the pressure difference shows an uptrend. Optically controlled variable damping system based on PLZT ceramic/ERF is a control method with the advantages of a clean excitation source, remote control, no electromagnetic interference, and fast response speed, and has a good application prospect in the field of vibration control and fluid control.
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基于矩形微通道中 PLZT 陶瓷/射频的光控可变阻尼系统
基于电磁激励智能材料的可变阻尼控制技术已广泛应用于(半)主动振动控制和流体控制领域。遗憾的是,其主要缺点是电磁噪声干扰大、响应速度低。本文提出了一种基于 PLZT 陶瓷/电流变液(ERF)的新型光控可变阻尼系统。建立了 PLZT 陶瓷产生的光电压和微通道两端压差的数学模型,并在 COMSOL Multiphysics 中进行了数值模拟验证。同时,随着光照强度、液体流速的增加以及微通道高度和宽度的减小,压差呈上升趋势。基于 PLZT 陶瓷/ERF 的光控可变阻尼系统是一种具有洁净激励源、远程控制、无电磁干扰、响应速度快等优点的控制方法,在振动控制和流体控制领域具有良好的应用前景。
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