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Gas coupled polymeric capacitive transducers via pad printing

机译:通过移印的气体耦合聚合物电容传感器

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摘要

Micropatterning of polymer substrates has been shown to be effective methodology for the manufacture of capacitive transducers. The method involves creating a positive mask of sessile liquid droplets on a polymer substrate. The droplets define the cavity dimensions and spatial distribution, a subsequent processing stage independently defines the cavity depth. Droplets can be defined in a variety of ways – this paper explores the patterning the droplets, and hence cavities, on the polymer substrate via a pad-printing technique. The printing pad is manufactured using 3D printing technique, an example pad is illustrated in Figure 1 – essentially the pad comprises an array of styli. The lateral dimensions and spatial distribution of the styli are replicated via the pattern of deposited droplets on the polymer substrate. The morphology of the styli tips has been explored - planar tips were found to droplet patterns with the highest fidelity. Single element air coupled devices operating with a nominal centre frequency of 500kHz have been constructed and evaluated experimentally. Transducer bandwidths in excess of 100% were observed with two-way insertion loss of 60dB being typical.
机译:聚合物基材的微图案化已被证明是制造电容式换能器的有效方法。该方法包括在聚合物基底上形成无固定液滴的正掩模。液滴定义腔体尺寸和空间分布,后续处理阶段独立定义腔体深度。可以用多种方法定义液滴-本文通过移印技术探讨了在聚合物基材上形成液滴的图案,从而探讨了空腔上的空腔。印台是使用3D打印技术制造的,图1中显示了一个示例印台-本质上,印台包括手写笔阵列。探针的横向尺寸和空间分布通过在聚合物基材上沉积的液滴的图案进行复制。已经探查了测针尖端的形态-发现平面尖端能以最高保真度滴落图案。已经构建并通过实验评估了标称中心频率为500kHz的单元件空气耦合设备。观察到传感器带宽超过100%,典型的双向插入损耗为60dB。

著录项

  • 作者

    OLeary Richard L.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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