Dinh Nghia Trong, Kanoun Olfa
Electrical Measurements and Sensor Technology, Technische Universität Chemnitz, Reichenhainer Str. 70, Chemnitz 09126, Germany.
Sensors (Basel). 2015 May 12;15(5):11133-50. doi: 10.3390/s150511133.
In this study, we propose a multi-walled carbon nanotube epoxy composite sensor for force and pressure sensing in the range of 50 N-2 kN. A manufacturing procedure, including material preparation and deposition techniques, is proposed. The electrode dimensions and the layer thickness were optimized by the finite element method. Temperature compensation is realized by four nanocomposites elements, where only two elements are exposed to the measurand. In order to investigate the influence of the filler contents, samples with different compositions were prepared and investigated. Additionally, the specimens are characterized by cyclical and stepped force/pressure loads or at defined temperatures. The results show that the choice of the filler content should meet a compromise between sensitivity, temperature influence and noise behavior. At constant temperature, a force of at least 50N can be resolved. The measurement error due to the temperature influence is 150N in a temperature range of -20°C-50°C.
在本研究中,我们提出了一种用于50 N至2 kN范围内力和压力传感的多壁碳纳米管环氧复合传感器。提出了一种制造工艺,包括材料制备和沉积技术。通过有限元方法对电极尺寸和层厚度进行了优化。温度补偿由四个纳米复合材料元件实现,其中只有两个元件暴露于被测量物。为了研究填料含量的影响,制备并研究了不同成分的样品。此外,通过周期性和阶梯式力/压力载荷或在规定温度下对试样进行表征。结果表明,填料含量的选择应在灵敏度、温度影响和噪声行为之间达成折衷。在恒定温度下,可以分辨出至少50N的力。在-20°C至50°C的温度范围内,温度影响引起的测量误差为150N。