带超磁致伸缩激振器的平板扬声器设计

Jianjun Zhou, Yu-sheng Wang, Xia Wang, Aihua Meng, Y. Pan
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引用次数: 2

摘要

采用一种新颖的设计,在平板扬声器中引入固体共振运动驱动。采用直接磁致伸缩作动器或带柔性铰链的放大磁致伸缩作动器来实现振动的驱动。所提出的面板扬声器不是一个或两个激励器,而是由几个微换能器协同振动产生声音并形成分布式模式扬声器(DML)声音系统。面板的整体振动将消除与目前的平板扬声器相关的低低音和脉冲响应。利用商业仿真软件包(如ANSYS和LSPCAD软件)对具有磁线圈组件的微型磁致伸缩致动器矩阵进行仿真,探索了将微致动器阵列用于扬声器应用的可能性。本文详细讨论了巨磁致伸缩激振器的设计、激振器的布置、面板材料的选择以及几种平板扬声器样机的测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a flat-panel loudspeaker with giant magnetostrictive exciters
A novel design has been undertaken to introduce solid resonant motion actuation in flat panel loudspeakers. The actuation of the vibration is obtained using direct magnetostrictive actuators or amplified magnetostrictive actuators with flexure hinges. Instead of one or two exciters, the proposed panel speakers have several micro-transducers vibrating coherently to produce sound and to form a Distributed Mode Loudspeaker (DML) sound system. The whole body vibration of the panel will eliminate the poor bass and impulse response associated with the present flat panel speakers. A matrix of miniature magnetostrictive actuators having magnet-coil assembly along with simulation using commercial simulation packages such as ANSYS and LSPCAD software explores the possibilities of using micro-actuators array for loudspeaker application. The paper discusses in details of the giant magenetostrictive exciter design, placement of the exciters, and choice of the panel materials as well as the test of several flat-panel loudspeaker prototypes.
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