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Elevation focusing of a phased array using variable ultrasound propagation speed in inter-mediate layer

机译:使用可变超声波传播速度在介相层间层的升高聚焦

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1.5D arrays have the advantage in dynamically focusing the array in elevation. However, they have the drawback that they require many more beamforming channels and connections than 1D arrays. A transducer with lens having electrorheological fluid has been proposed as another method of dynamic elevation focusing. To the author's knowledge, however, few publications on this method have appeared in the literature. We have therefore experimentally investigated the elevation focusing of a phased array by using variable ultrasound propagation speed in inter-mediate layer. Piezoelectric material whose elastic stiffness is dependent on loaded electrical impedance was used as inter-mediate layer for controlling the ultrasound propagation speed. We have fabricated a 3.0MHz phased array with 8 inter-mediate layer rows in elevation. The ultrasound propagation speed in each row can be independently controlled. We have verified that these inter-mediate layer rows function as effective elevation focusing. In this paper, the theory and the method of using variable ultrasound propagation speed in inter-mediate layer are presented. Measurements from this phased array are compared with those from a 3.0 MHz phased array with conventional lens.
机译:1.5D阵列具有动态聚焦阵列的优点。然而,它们具有缺点,即它们需要更多的波束成形通道和多于1D阵列的连接。已经提出了一种具有电流流体的透​​镜的换能器作为动态高度聚焦的另一种方法。然而,对于作者的知识,在文献中出现了很少有问题的出版物。因此,我们通过使用相互介断层中的可变超声波传播速度来实验地研究了分阶段阵列的高度聚焦。弹性刚度取决于负载电阻抗的压电材料用作介导的层,用于控制超声波传播速度。我们制造了一个3.0MHz的相控阵,提升8个中间层间行。可以独立地控制每行的超声波传播速度。我们已经验证了这些中间层间行用作有效的高程聚焦。在本文中,介绍了在介相间层中使用可变超声波传播速度的理论和方法。将来自该分阶段阵列的测量与带有传统镜头的3.0 MHz相控阵的测量值进行比较。

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