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Recent advances in 1-3 piezoelectric polymer composite transducer technology for AUV/UUV acoustic imaging applications

机译:用于AUV / UUV声成像应用的1-3压电聚合物复合换能器技术的最新进展

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The use of 1-3 piezoelectric polymer composite has been studied over the years under various U.S. Navy funded transducer research programs. As a transduction material, the 1-3 piezoelectric composite offers many advantages for autonomous/unmanned undersea vehicles (AUV/UUV) imaging array construction. Broad bandwidth, high transmit/receive response, low cost of fabrication, mechanical ruggedness, and the ability to form conformal shapes, make this material both a unique and intriguing medium for the sonar transducer designer. The 1-3 piezocomposite panels are comprised of several piezoceramic rods aligned vertically through the panel's thickness with each rod surrounded with a specific polymer epoxy. Volume fractions of ceramic to polymer can vary up to 50% with panel thickness ranging between fractions of a millimeter (2-4 MHz) to 25 millimeters (50-70 kHz). This presentation elucidates the application of this unique material to a variety of practical transducer designs and describes some of the device demonstrations along with measured performance data.
机译:多年来,在美国海军资助的各种换能器研究计划下,对1-3压电聚合物复合材料的使用进行了研究。作为一种转导材料,1-3压电复合材料为自动/无人海底飞行器(AUV / UUV)成像阵列构造提供了许多优势。宽带宽,高发射/接收响应,低制造成本,机械坚固性以及形成共形形状的能力,使这种材料成为声纳换能器设计者的独特而有趣的媒介。 1-3个压电复合材料面板由几个压电陶瓷棒组成,这些棒在面板的厚度上垂直对齐,每个棒都被特定的聚合物环氧树脂包围。陶瓷到聚合物的体积分数最多可变化50%,面板厚度介于几毫米(2-4 MHz)到25毫米(50-70 kHz)之间。本演讲阐明了这种独特材料在各种实际换能器设计中的应用,并描述了一些器件演示以及测得的性能数据。

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