使用压电材料设计二维薄膜扬声器

Keehong Um, Dong-Soo Lee
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引用次数: 2

摘要

扬声器是一种通过机电操作产生声音的声学装置。大多数扬声器由三维装置组成,如音圈、永磁体和外壳。由于磁体和音圈之间的磁相互作用,施加在音圈上的交流电压会产生锥体的位移。位移产生音频声波。最近,许多移动电子设备,如手机,为了方便和由于先进的技术变得更小,更轻,更薄。然而,这种小型化的一个问题是,产生的输出声音的音量也减少了。与传统的三维扬声器不同,我们利用某些压电材料的反向压电效应,设计了一种新型的二维柔性扬声器。这将在当今越来越薄的消费电子设备(如手机)中非常有用。还有其他应用,如衣服、可穿戴电脑、雨衣等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing two-dimensional film speakers using piezoelectric materials
A speaker is an acoustic device which produces sound through electromechanical operations. Most speakers are comprised of three-dimensional devices such as a voice coil, a permanent magnet, and an enclosure. An ac voltage applied to the voice coil generates displacement of the cone due to the magnetic interaction between the magnet and the voice coil. The displacement produces audio sound waves. Recently, many mobile electronic devices such as mobile phones have become smaller, lighter, and thinner for the sake of convenience and due to advanced technologies. A problem with this miniaturization, however, is that the volume of the produced output sounds has also decreased. In contrast to conventional three-dimensional speakers, we have designed a new type of two-dimensional flexible speaker based on the use of reverse piezoelectric effect on certain piezoelectric materials. This would be very useful in today's increasingly thinner consumer electronics devices such as mobile phones. There are other applications such as clothes, wearable computers, raincoats, etc.
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