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3D printed capacitive pressure sensor with corrugated surface

机译:3D印刷电容压力传感器,带波纹表面

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In this work a novel 3D printed capacitive pressure sensor with a corrugated surface is presented. The design composed of top and bottom plates. The sensor is 3D printed using a commercially available polymer material and then coated with Cr and Au with sputtering process. The dimensions of produced structure that designed is 11 × 11 × 4.6mm. Due to the corrugated surface, the area of the plates is increased 19.46% compared to a standard flat surface parallel plate capacitive sensor in the same bulk area. The design process of the sensor, simulation and the experimental results are given and explained in detail. The performance of the sensor is tested with various pressure levels between 0 Pa and 8.88 kPa. The experimental results show that the capacitance range of the sensor is 2.7 pF-4.3 pF. The maximum sensitivity of the sensor is obtained as 0.14 pF / kPa. The results confirm that the presented capacitive sensor can be utilized for carrying out pressure measurements.
机译:在这项工作中,提出了一种具有波纹表面的新型3D印刷电容压力传感器。设计由顶板和底板组成。传感器是使用市售的聚合物材料印刷的3D,然后用溅射工艺用Cr和Au涂覆。制作结构的尺寸设计为11×11×4.6mm。由于波纹表面,与同一散装区域中的标准平坦表面平行板电容传感器相比,板的面积增加了19.46℃。给出并详细解释了传感器,模拟和实验结果的设计过程。传感器的性能在0Pa和8.88kPa之间以各种压力水平进行测试。实验结果表明,传感器的电容范围为2.7 PF-4.3 PF。传感器的最大灵敏度获得为0.14pf / kPa。结果证实所提出的电容传感器可用于进行压力测量。

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