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Flexible shear-stress sensor skin and its application to unmanned aerial vehicles

机译:柔性剪应力传感器蒙皮及其在无人机中的应用

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Shear-stress information is of great interest for many fluidic dynamic monitoring/diagnostics application. To obtain such information on non-planar surfaces has long been a significant challenge. This paper describes the development of flexible shear-stress sensor skin and its application on the detection of leading edge flow separation for delta planform unmanned aerial vehicles (UAVs). The sensor skin contains a 1-D array of 36 shear-stress sensors, which can cover the 180degrees surface of the 1.27 cm diameter semicylindrical UAV leading edge with 5degrees resolution. The implementation process of the sensor skin is significantly simplified by a packaging scheme based on solder bonding and flexible printed circuit board (PCB). The flexible shear-stress sensor skin in both wind tunnel and real flight tests detected the flow separation along the leading edge successfully. (C) 2003 Elsevier B.V. All rights reserved. [References: 10]
机译:剪切应力信息对于许多流体动力学监测/诊断应用非常感兴趣。长期以来,要在非平面表面上获取此类信息一直是一项重大挑战。本文介绍了柔性剪应力传感器蒙皮的发展及其在三角洲平面无人机(UAV)前沿流分离检测中的应用。传感器蒙皮包含一个由36个剪切应力传感器组成的一维阵列,该传感器阵列可以以5度的分辨率覆盖直径为1.27厘米的半圆柱形UAV前缘的180度表面。通过基于焊料键合和柔性印刷电路板(PCB)的封装方案,显着简化了传感器皮肤的实施过程。在风洞测试和实际飞行测试中,灵活的剪应力传感器外壳都能成功检测沿前缘的气流分离。 (C)2003 Elsevier B.V.保留所有权利。 [参考:10]

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