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Improving Performance of Ultrasound Transducers with Aerogel Matching Layer for Tactile Display

机译:带有气凝胶匹配层的触觉显示器提高超声换能器的性能

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Focused ultrasound is emerging as a novel technique for mid-air tactile display. A striking limitation is the low transduction of ultrasound energy due, in part, to the massive acoustic impedance mismatch between the piezoelectric transducer and air. This paper investigates the use of silica aerogel alloys as a matching layer to improve transduction efficiency in air for mid-air tactile display. Two transducers are manually machined and evaluated to proof-concept the theory proposed in this paper. Results demonstrated that the manually machined transducers produce 2-3 dBV acoustic energy in air compared to the commercially available transducer. Future work involves exploring an automated process to machine a large number of these transducers and buiding an array with the modified transducers in order to perceptually evaluate the performance for tactile display.
机译:聚焦超声作为一种新的空中触觉显示技术正在兴起。一个显着的局限性是超声能量的低传导性,这部分归因于压电换能器与空气之间的巨大声阻抗失配。本文研究了二氧化硅气凝胶合金作为匹配层的使用,以提高空气对中空触觉显示器的转换效率。手动加工两个换能器并进行评估以验证本文提出的理论。结果表明,与市售换能器相比,手动加工的换能器在空气中产生2-3 dBV的声能。未来的工作包括探索一种自动过程以加工大量此类换能器,并在阵列中安装经过修改的换能器,以感知地评估触觉显示的性能。

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