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Protection layer for air-coupled waveguide ultrasonic phased arrays

机译:空气耦合波导超声相控阵的保护层

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Air-coupled ultrasonic phased arrays with acoustic waveguides offer grating-lobe-free beamforming for different applications such as obstacle detection, range finding, flow metering, acoustic levitation or tactile feedback. However, for real world applications the open outputs of the waveguide must be protected against fluids and dust in order to prevent clogging in the waveguide openings resulting in additional acoustic attenuation. In this work, we compare a hydrophobic fabric and a low density polyethylene (LDPE) foil regarding the insertion loss (IL), the influence on the beamforming, the blind zone in pulse-echo mode and the watertightness. Measurements are conducted in an anechoic chamber in transmit, receive and pulse-echo mode. The watertightness is determined with a submersion experiment in a water column of up to 2 m. The hydrophobic fabric has an IL of 1.8 dB±1 dB and does not effect the blind zone, whereas the LDPE foil has a higher IL of 7.5 dB±1 dB and increases the blind zone by 22%. The LDPE foil reaches IPX8, whereas the hydrophobic fabric reaches IPX7. However, in pulse-echo mode it is possible with both protection layers to detect a 10 mm-hollow steel sphere at a distance of 1 m. Their influence on the beamforming is within the measurement uncertainty.
机译:带有声波导的空气耦合超声相控阵可为障碍物检测,测距,流量计,声悬浮或触觉反馈等不同应用提供无波瓣的波束成形。然而,对于现实世界的应用,必须保护波导的开放输出不受流体和灰尘的影响,以防止阻塞在波导开口中,从而导致额外的声衰减。在这项工作中,我们比较了疏水性织物和低密度聚乙烯(LDPE)箔的插入损耗(IL),对波束形成的影响,脉冲回波模式下的盲区和水密性。在消声室中以发射,接收和脉冲回波模式进行测量。通过浸没实验在不超过2 m的水柱中确定水密性。疏水性织物的IL为1.8 dB±1 dB,不会影响盲区,而LDPE箔的IL较高,为7.5 dB±1 dB,盲区增加了22%。 LDPE箔达到IPX8,而疏水性织物达到IPX7。但是,在脉冲回波模式下,两个保护层都可以在1 m的距离处检测10 mm空心的钢球。它们对波束成形的影响在测量不确定度之内。

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