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Low insertion loss air-coupled ultrasonic transducer with parallel laminated piezoelectric structure

机译:具有平行层压压电结构的低插入损耗气相超声换能器

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This work presents a low insertion loss air-coupled ultrasonic transducer with a parallel laminated piezoelectric structure. The relevant parameters of this structure are theoretically analyzed. For overcoming the enormous acoustic impedance mismatch between the piezoelectric material and air, a 1–3 connectivity piezoelectric composite, and a stack of two low acoustic impedance matching layers are adopted. The experimental results show that the insertion loss of ?17.5 dB is obtained under the pitch-catch mode with the length of the air column of 50 mm by selecting a suitable air-coupled ultrasonic transducer combination. The insertion loss improvement is 3.8 dB compared with a monolayer piezoelectric structure with an identical active area.
机译:该工作介绍了具有平行叠层压电结构的低插入损耗空气耦合超声换能器。理论上分析了这种结构的相关参数。为了克服压电材料和空气之间的巨大声阻抗不匹配,采用1-3个连接压电复合材料和两种低声阻抗匹配层的堆叠。实验结果表明,通过选择合适的空气耦合超声换能器组合,在间距锁定模式下,在间距 - 捕获模式下获得17.5dB的插入损耗。与具有相同活动区域的单层压电结构相比,插入损耗改善为3.8dB。

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