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A flexible micromachine-based shear-stress sensor array and its application to separation-point detection

机译:基于柔性微机的切应力传感器阵列及其在分离点检测中的应用

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摘要

A new microfabrication technique has evolved and has been applied to the development of a flexible shear-stress sensor array. The flexible sensor array is composed of many silicon islands that are interconnected by two layers of polyimide film. The silicon islands are formed by RIE etching and contain individual thermal shear-stress sensors. Each sensor on the flexible sensor array has been proven to behave the same as those on a rigid substrate. There are more than 100 sensors distributed inside a 1 cm×3 cm area. The flexible sensor array has a thickness of 80 μm and can be easily attached on a highly curved surface to detect shear-stress distribution. Applications of the flexible sensor array to flow separation-point detection have been demonstrated in this task, including flow over a circular cylinder and instantaneous separation line detection on the rounded leading edges of a delta wing.
机译:已经发展出一种新的微细加工技术,并将其应用于柔性剪切应力传感器阵列的开发。柔性传感器阵列由许多硅岛组成,这些硅岛通过两层聚酰亚胺薄膜相互连接。硅岛通过RIE蚀刻形成,并包含独立的热切应力传感器。事实证明,柔性传感器阵列上的每个传感器的行为都与刚性基板上的相同。在1 cm×3 cm的区域内分布有100多个传感器。柔性传感器阵列的厚度为80μm,可以轻松地附着在高度弯曲的表面上以检测剪切应力分布。在该任务中已证明了柔性传感器阵列在流动分离点检测中的应用,包括在圆柱体上流动和在三角翼的圆形前缘上进行瞬时分离线检测。

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