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High sensitive Polyimide-based single-walled carbon nanotube thermal film sensor for fluid shear stress measurements

机译:基于高敏感的聚酰亚胺单壁碳纳米管热膜传感器,用于流体剪切应力测量

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摘要

A flexible polyimide-based single-walled carbon nanotube (SWCNT) thermal film sensor has been developed for wall shear stress measurements in both air and water. To ensure high sensitivity, vacuum thermal annealing and electrical aging are conducted to enhance the electric properties of the sensor with low-resistance and the high temperature coefficient of resistivity (TCR). The TCR of sensors can reach to 8040 ppm/degrees C to the author's knowledge, which is the highest reported value of thermal sensors used for shear stress measurements. In calibration, the output voltage of the sensor is proportional to the one third power of wall shear stress with the sensitivity on the order of mV Pa-1 in the constant current operation mode. The repeatability error is no more than 1% in both air and water, which confirms the capability of the flexible SWCNT thermal film sensor for fluid wall shear stress measurements with high sensitivity.
机译:柔性聚酰亚胺的单壁碳纳米管(SWCNT)热膜传感器已经开发用于空气和水的壁剪切应力测量。 为了确保高灵敏度,进行真空热退火和电老化以增强具有低电阻和高温电阻率(TCR)的传感器的电性能。 传感器的TCR可以达到8040ppm /℃的作者的知识,这是用于剪切应力测量的热传感器的最高值。 在校准时,传感器的输出电压与墙面剪切应力的三分之一电压成比例,在恒定电流操作模式下的MV PA-1的顺序上的灵敏度。 空气和水中的重复性误差不超过1%,这证实了柔性SWCNT热膜传感器的能力,用于具有高灵敏度的流体墙剪切应力测量。

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