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首页> 外文期刊>Science Advances >Stretchable ultrasonic transducer arrays for three-dimensional imaging on complex surfaces
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Stretchable ultrasonic transducer arrays for three-dimensional imaging on complex surfaces

机译:可拉伸超声换能器阵列,用于在复杂表面上进行三维成像

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Ultrasonic imaging has been implemented as a powerful tool for noninvasive subsurface inspections of both structural and biological media. Current ultrasound probes are rigid and bulky and cannot readily image through nonplanar three-dimensional (3D) surfaces. However, imaging through these complicated surfaces is vital because stress concentrations at geometrical discontinuities render these surfaces highly prone to defects. This study reports a stretchable ultrasound probe that can conform to and detect nonplanar complex surfaces. The probe consists of a 10 × 10 array of piezoelectric transducers that exploit an “island-bridge” layout with multilayer electrodes, encapsulated by thin and compliant silicone elastomers. The stretchable probe shows excellent electromechanical coupling, minimal cross-talk, and more than 50% stretchability. Its performance is demonstrated by reconstructing defects in 3D space with high spatial resolution through flat, concave, and convex surfaces. The results hold great implications for applications of ultrasound that require imaging through complex surfaces.
机译:超声成像已被用作对结构和生物介质进行非侵入性地下检查的强大工具。当前的超声探头是刚性且笨重的,并且不能轻易地通过非平面三维(3D)表面成像。但是,通过这些复杂的表面成像非常重要,因为几何不连续处的应力集中使这些表面极易出现缺陷。这项研究报告了一种可拉伸的超声探头,该探头可以顺应并检测非平面的复杂表面。该探头由一个10×10的压电换能器阵列组成,这些压电换能器采用“岛桥”式布局,带有多层电极,并由薄而柔顺的有机硅弹性体封装。可拉伸探针显示出优异的机电耦合,最小的串扰和超过50%的可拉伸性。通过在平坦,凹面和凸面表面上以高空间分辨率重建3D空间中的缺陷,可以证明其性能。该结果对于需要通过复杂表面成像的超声应用具有重大意义。

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