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具有高d常数的压电陶瓷及其在薄膜扬声器中的应用。

Piezoelectric Ceramics with High d Constants and Their Application to Film Speakers.

作者信息

Kim Sowon, Lee Heechul

机构信息

Department of Advanced Materials Engineering, Korea Polytechnic University, Siheung 15073, Korea.

出版信息

Materials (Basel). 2021 Oct 3;14(19):5795. doi: 10.3390/ma14195795.

Abstract

A multilayer piezoelectric material was fabricated using piezoelectric materials with low-temperature sintering capabilities and high piezoelectric coefficients to develop a functionally superior piezoelectric speaker with a large-displacement deformation. A soft relaxor was utilized to prepare the component materials, with the optimized composition of the investigated piezoelectric ceramics represented by 0.2Pb((Zn0.8Ni0.2)13Nb23)O3-0.8Pb(Zr0.5Ti0.5)O3. Li2CO3 was added to assist the low-temperature sintering conducted at 875 °C, which yielded a multilayer piezoelectric material with superior properties (d33 = 500 pC N, kp = 0.63, g33 = 44 mV N). A multilayer piezoelectric actuator with a single-layer thickness of ~40 µm and dimensions of 12 × 16 mm was fabricated by tape casting the prepared green sheets. Finite element analysis revealed that the use of a PEEK film and a smaller silicone-rubber film as a composite in the diaphragm realized optimal frequency-response characteristics; the vibrations generated by the piezoelectric element were amplified. The optimal structure obtained via simulations was applied to fabricate an actual piezoelectric speaker with dimensions of 20 × 24 × 1 mm. The actual measurements exhibited a sound pressure level of ~75 dB and a total harmonic distortion ≤15% in the audible frequency range (250-20,000 Hz) at an applied voltage of 5 Vp.

摘要

采用具有低温烧结能力和高压电系数的压电材料制备了一种多层压电材料,以开发一种功能更优、具有大位移变形的压电扬声器。利用一种软弛豫铁电体来制备组成材料,所研究的压电陶瓷的优化成分为0.2Pb((Zn0.8Ni0.2)13Nb23)O3-0.8Pb(Zr0.5Ti0.5)O3。添加Li2CO3以辅助在875℃下进行的低温烧结,得到了具有优异性能(d33 = 500 pC/N,kp = 0.63,g33 = 44 mV/N)的多层压电材料。通过流延制备的生片,制造了一种单层厚度约为40μm、尺寸为12×16 mm的多层压电致动器。有限元分析表明,在振膜中使用聚醚醚酮(PEEK)薄膜和较小的硅橡胶薄膜作为复合材料可实现最佳频率响应特性;压电元件产生的振动得到放大。将通过模拟获得的最佳结构应用于制造尺寸为20×24×1 mm的实际压电扬声器。实际测量显示,在5 Vp的施加电压下,在可听频率范围(250 - 20,000 Hz)内,声压级约为75 dB,总谐波失真≤15%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b42/8510374/b80ed7afba93/materials-14-05795-g001.jpg

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