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Piezocomposite transducer design and performance for high resolution ultrasound imaging transducers

机译:压电复合换能器的设计和高分辨率超声成像换能器的性能

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Piezocomposite design for dedicated ultrasonic imaging applications requires precise homogenization models for predicting the electromechanical characteristics of the new material. Thus, several homogenization models have been developed. As part of this work, we applied several analytical homogenization models for piezocomposite of 2-2 and 1-3 connectivities. To validate these analytical models, a comparative study was made between various models and experimental measurements. As a result, these homogenized electromechanical properties are effectively used for the calculation and comparison of electroacoustic response for typical transducers aimed at ultrasound imaging applications. An optimal design of transducer aimed at ultrasound imaging applications is proposed as a dedicated imaging performance index, elaborated through a trade-off between sensitivity and bandwidth.
机译:用于专用超声成像应用的压电复合材料设计需要精确的均质化模型来预测新材料的机电特性。因此,已经开发了几种均质化模型。作为这项工作的一部分,我们对2-2和1-3连接性的压电复合材料应用了几种分析均化模型。为了验证这些分析模型,在各种模型和实验测量之间进行了比较研究。结果,这些均质的机电性能可有效地用于计算和比较针对超声成像应用的典型换能器的电声响应。提出了针对超声成像应用的换能器的最佳设计,作为专用的成像性能指标,并通过在灵敏度和带宽之间进行权衡取舍。

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