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Design and experimental study on acoustic properties of (0-3) composite materials for acoustic matching layer of air-coupled ultrasonic transducer

机译:空气耦合超声换能器声匹配层(0-3)复合材料声学性能设计与实验研究

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摘要

The acoustic properties of (0-3) composite materials for acoustic matching layer of MHzrange air-coupled ultrasonic transducer are studied experimentally. The composite materials are formed from a mixture of silicone rubber and hollow thermoplastic microspheres. The acoustic theoretical model for elastic properties of composite materials. The measured values of velocity and characteristic acoustic impedance of the composite materials agreed well with the theoretical estimation up to 10% weight fractions of hollow thermoplastic microspheres. The optimal value of characteristic acoustic impedance for acoustic matching layer of air-coupled ultrasonic transducer was calculated using transmission line model. The acoustic matching layer having the optimal value was obtained from the composite material, for which the weight percentage of hollow thermoplastic microspheres is 5%. Transmission of air-coupled ultrasonic wave of 1 MHz using piezoceramic transducer with the acoustic matching layer is demonstrated, and the sensitivity of transmission was improved by 10 dB using the optimal composite material.
机译:实验研究了MHzrange空气耦合超声换能器声学匹配层的(0-3)复合材料的声学性能。复合材料由硅橡胶和中空热塑性微球的混合物形成。复合材料弹性特性的声学理论模型。复合材料的速度和特征声阻抗的测量值与中空热塑性微球的重量分数最高为10%的理论估算值非常吻合。利用传输线模型计算了空气耦合超声换能器声匹配层的特征声阻抗最优值。由复合材料获得具有最佳值的声匹配层,其中中空热塑性微球的重量百分比为5%。演示了使用带有声匹配层的压电换能器传输1 MHz的空气耦合超声波,并使用最佳复合材料将传输灵敏度提高了10 dB。

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