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Lensing in the Ultrasonic Domain using Negative Refraction Induced by Material Contrast

机译:使用材料对比度引起的负折射在超声波域中进行透镜成像

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The focusing of ultrasound using topographic lenses, typically made of plates with step changes that cause an interaction between forward- and backward-propagating guided waves, has been widely studied in recent years. However, such 'step-change' lenses require precise machining and moreover, the thick-thin structure can be unstable during deployment in practical inspection applications. The work reported here follows from the insight that perhaps any approach to induce a mismatch in acoustical impedance as achieved by the step-change can also lead to focusing of ultrasonic guided waves. By carefully choosing the impedance pairing, a novel material contrast lens stacking Aluminium and Molybdenum plates in series is shown to achieve focusing of ultrasound through negative refraction. The interface between the two metals causes the interaction of the forward-propagating second symmetric Lamb mode Ssub2/sub into the backward- propagating first symmetric Ssub2b/sub. The focusing of Lamb waves is demonstrated using numerical simulations?validated by experiments. Comparison with a simple Aluminium-Aluminium plate?combination brings out the underlying physics of focusing using the proposed?material contrast lens. Simulation results showing super-resolution imaging using the proposed material contrast lens are also presented, demonstrating the power of the proposed approach. This report opens up the possibilities of developing new lensing devices for use in medical imaging and nondestructive evaluation, among other possible?applications.
机译:近年来,已广泛研究了使用地形透镜对超声波进行聚焦的方法,该透镜通常由具有阶跃变化的板构成,该阶跃变化会引起向前和向后传播的导波之间发生相互作用。然而,这种“阶梯式”透镜需要精确的加工,此外,厚薄的结构在实际检查应用中的展开过程中可能不稳定。此处报道的工作是基于这样的见解:也许通过阶跃变化实现的任何导致声阻抗不匹配的方法也可能导致超声导波聚焦。通过仔细选择阻抗对,可以显示出一种新颖的材料对比透镜,该材料堆叠了一系列铝和钼板,可以通过负折射实现超声波聚焦。两种金属之间的界面导致正向传播的第二对称Lamb模S 2 与向后传播的第一对称S 2b 相互作用。通过实验验证了数值模拟,证明了兰姆波的聚焦。与简单的铝-铝板组合的比较得出了使用所建议的材料对比透镜聚焦的基本原理。仿真结果还显示了使用所建议的材料对比镜头进行超分辨率成像的过程,证明了所建议方法的强大功能。该报告开辟了开发用于医学成像和非破坏性评估的新镜头设备的可能性,以及其他可能的应用。

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