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基于柔性双层加热结构的高灵敏度流量传感器。

Highly Sensitive Flow Sensor Based on Flexible Dual-Layer Heating Structures.

机构信息

Key Lab of Micro/Nano Systems for Aerospace, Ministry of Education, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Sensors (Basel). 2020 Nov 20;20(22):6657. doi: 10.3390/s20226657.

Abstract

Hot film sensors detect the flow shear stress based on the forced convection heat transfer to the fluid. Current hot film sensors have been significantly hindered by the relatively low sensitivity due to the massive heat conduction to the substrate. This paper describes the design, fabrication, simulation, and testing of a novel flow sensor with dual-layer hot film structures. More specifically, the heat conduction was insulated from the sensing heater to the substrate by controlling both sensing and guarding heaters working at the same temperature, resulting in a higher sensitivity. The experiment and simulation results showed that the sensitivity of the dual-layer hot film sensor was significantly improved in comparison to the single-layer sensor. Additionally, the dual-layer sensor was designed and fabricated in an integrated, flexible, and miniaturized manner. Its small size makes it an excellent candidate for flow detection.

摘要

热线膜传感器基于对流体的强制对流换热来检测流切应力。由于大量的热传导到基底,当前的热线膜传感器受到相对较低的灵敏度的显著阻碍。本文描述了一种具有双层热线结构的新型流量传感器的设计、制造、模拟和测试。更具体地说,通过控制工作在相同温度的传感和保护加热器,将热传导从传感加热器隔离到基底,从而提高了灵敏度。实验和模拟结果表明,与单层传感器相比,双层热线传感器的灵敏度得到了显著提高。此外,双层传感器以集成、灵活和小型化的方式进行设计和制造。其小尺寸使其成为流量检测的理想选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a847/7699840/8a90823d1006/sensors-20-06657-g001.jpg

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