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Tunable Hybrid Phononic Crystal Lens Using Thermo-Acoustic Polymers

机译:使用热声聚合物的可调谐混合声子晶体透镜

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摘要

Solid phononic crystal (PnC) lenses were made active on infiltration with thermosensitive polymers to produce a thermoactuated hybrid solid lens with variable focusing. Acoustic lenses, both solid state and PnCbased, are passive elements with a fixed focal length. Their focal characteristics are functions of the lens structure or the arrangement of the PnC unit cell. Dispersion effects, liquid-filled membranes, and phase delay in a multi-element emitter have been used for variable focusing. The high thermal, electric, and electromagnetic sensitivity of the elastic properties of poly(vinyl alcohol) (PVA) poly(N-isopropylacrylamide) (PNIPAm)-based hydrogels enable them to operate as tunable solids. However, these solids do not have strong enough contrast with water or well-controlled shape parameters to function as standalone lenses. Here, a tunable hybrid solid ultrasonic lens is realized by combining a PnC lens with PVA-PNIPAm thermoacoustic hydrogel to modify the transmission and dispersion properties of transient acoustic waves. Variable focusing is demonstrated from 40 to 50 mm using the anomalous thermosensitivity of the elasticity and speedof sound of the hydrogel.
机译:固态声子晶体(PnC)镜片在浸入热敏聚合物后变得具有活性,以生产具有可变聚焦的热致动混合固态镜片。固态和基于PnC的声学透镜都是具有固定焦距的无源元件。它们的聚焦特性取决于透镜结构或PnC晶胞的布置。多元素发射器中的色散效应,液体填充膜和相位延迟已用于可变聚焦。聚乙烯醇(PVA)聚(N-异丙基丙烯酰胺)(PNIPAm)基水凝胶的弹性具有很高的热,电和电磁敏感性,从而使其可作为可调谐固体使用。但是,这些固体与水或形状参数控制得很好的对比度不足以充当独立镜头。在这里,可调谐混合固体超声透镜是通过将PnC透镜与PVA-PNIPAm热声水凝胶结合以改变瞬态声波的透射和色散特性而实现的。利用弹性和速度的异常热敏性,可在40至50 mm范围内显示可变聚焦水凝胶的声音。

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