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An All Polymer Air-Flow Sensor Array using a Piezoresistive Composite Elastomer

机译:使用压阻复合弹性体的所有聚合物气流传感器阵列

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This paper presents an out-of-plane micromachined piezoresistive flow sensor array based on laser micromachining of polymer films, microstencil printing, and stress-engineered curvature. The developed process is suitable for low cost, large-area sensor array fabrication, and can leverage traditional flex-circuit fabrication. Each device is composed of an out-of-plane curved microtuft formed from laser-machined Kapton?? polyimide and PECVD-deposited SiO2, and a conductive elastomer piezoresistor with a measured gage factor of 7.3 located at the base of the microtuft. The fabrication and performance of a prototype array and a fabrication sequence for large-area arrays on flexible substrates is demonstrated, for flow field mapping across an airfoil. The fabrication sequence also enables backside interconnects without adding further process complexity, which facilitates integration and enables the sensing of airflow with minimum interference due to the sensing circuitry. Individual microtufts as small as 1.5mm in length and 0.4mm in width, with 70 ??m wide piezoresistor lines have been fabricated. Wind tunnel testing demonstrated sensitivities as high as 66 ??/(m/s).
机译:本文介绍了一种基于聚合物膜,微仪印刷和应力工程曲率的激光微加工的平面外微加工压阻式流量传感器阵列。开发的过程适用于低成本,大面积传感器阵列制造,并可以利用传统的柔性电路制造。每个设备由由激光加工的Kapton形成的平面外弯曲的微管组成聚酰亚胺和PECVD沉积的SiO 2 ,导电弹性体压阻器,其测量值为7.3位于Microtuft的底部。对柔性基板上的大面积阵列进行原型阵列的制造和性能,用于穿过翼型的流场映射。制造序列还使得能够反向互连,而不增加进一步的过程复杂性,这便于整合并且能够通过感测电路引起的最小干扰感测气流。单个Microtufts的长度为1.5mm,宽度为0.4mm,具有70宽压电电阻线。风洞测试显示高达66°/(m / s)的敏感性。

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