M. Subki, K. A. Ahmad, M. K. Osman, R. Boudville, S. Yahya, Mohamad Faizal Abd Rahman, Z. Hussain
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引用次数: 0
摘要
水下超声通信是一种水下水平信息的发送和接收方法。目前已经发现了许多应用,例如潜艇之间的通信,水下通信有几种方式,但最常用的通信是水听器。水听器可以采用压电材料或电容材料制作传感元件。目前基于压电材料的水听器灵敏度低、带宽窄。由于水听器的性能较差,这将影响声呐的应用。本课题旨在利用有限元分析方法,设计、模拟和表征一种用于水下通信的新型压电超声换能器的衬底层结构。本研究包括了不同类型的衬底层,应用于一种新型结构衬底层。有三种类型的背衬层,即木材(松木),塑料(亚克力)和金属(钛)。仿真的频率范围为1khz ~ 100khz。金属钛21S压电式超声换能器的带宽为53.7%。该器件的发射电压响应为110 dB rel 1 μPa/V。钛21S金属材料提高了换能器的性能,是其他材料中性能最高的。
Characterization of Backing Layer Piezoelectric Ultrasonic Transducers for Underwater Communication
Underwater ultrasonic communication is a methods of sending and receiving messages for underwater level. Nowadays there is a lot application that have been discovered for example telecommunication between submarines There are several ways to communicate underwater level but the most common communication using hydrophone. Hydrophone can be build based on sensing element using piezoelectric material or capacitive material. Currently hydrophones based piezoelectric material are low sensitivity and narrow bandwidth. This will affect the sonar application when used the low performance of hydrophones. This project is aimed to design, simulate and characterize a new backing layer structure for piezoelectric ultrasonic transducer applied in underwater communication using finite element analysis (FEA). The study was included a different types of backing layers that applied for a new structure backing layer. There were 3 types of backing layer constructed, namely wood (pine), plastic (acrylic) and metal (titanium). The frequency ranges of 1 kHz to 100 kHz were applied in simulation. Piezoelectric ultrasonic transducer with titanium 21S metal has wide bandwidth of 53.7 %. The transmitting voltage response of the device was 110 dB rel 1 μPa/V. The material of titanium 21S metal has improved transducer performance where it was the highest performance between other materials.