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Broadband gradient impedance matching using an acoustic metamaterial for ultrasonic transducers

机译:使用声学超材料的超声换能器宽带梯度阻抗匹配

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摘要

High-quality broadband ultrasound transducers yield superior imaging performance in biomedical ultrasonography. However, proper design to perfectly bridge the energy between the active piezoelectric material and the target medium over the operating spectrum is still lacking. Here, we demonstrate a new anisotropic cone-structured acoustic metamaterial matching layer that acts as an inhomogeneous material with gradient acoustic impedance along the ultrasound propagation direction. When sandwiched between the piezoelectric material unit and the target medium, the acoustic metamaterial matching layer provides a broadband window to support extraordinary transmission of ultrasound over a wide frequency range. We fabricated the matching layer by etching the peeled silica optical fibre bundles with hydrofluoric acid solution. The experimental measurement of an ultrasound transducer equipped with this acoustic metamaterial matching layer shows that the corresponding −6 dB bandwidth is able to reach over 100%. This new material fully enables new high-end piezoelectric materials in the construction of high-performance ultrasound transducers and probes, leading to considerably improved resolutions in biomedical ultrasonography and compact harmonic imaging systems.
机译:高质量的宽带超声换能器在生物医学超声检查中可提供卓越的成像性能。然而,仍然缺乏适当的设计来在工作频谱上完美地桥接活性压电材料和目标介质之间的能量。在这里,我们演示了一个新的各向异性的锥形结构的声学超材料匹配层,该层用作沿超声传播方向具有梯度声阻抗的不均匀材料。当夹在压电材料单元和目标介质之间时,声学超材料匹配层将提供宽带窗口,以支持超宽频率范围内超声的非凡传输。我们通过用氢氟酸溶液蚀刻剥离的二氧化硅光纤束来制造匹配层。配备此声超材料匹配层的超声换能器的实验测量表明,相应的-6 dB带宽能够达到100%以上。这种新材料完全可以在高性能超声换能器和探头的构造中使用新型高端压电材料,从而大大提高了生物医学超声检查和紧凑型谐波成像系统的分辨率。

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