Department of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung 80778, Taiwan.
Sensors (Basel). 2012;12(3):3269-80. doi: 10.3390/s120303269. Epub 2012 Mar 7.
This study presents a novel flexible strain sensor for real-time strain sensing. The material for strain sensing is single-walled carbon nanonets, grown using the alcohol catalytic chemical vapor deposition method, that were encapsulated between two layers of Parylene-C, with a polyimide layer as the sensing surface. All of the micro-fabrication was compatible with the standard IC process. Experimental results indicated that the gauge factor of the proposed strain sensor was larger than 4.5, approximately 2.0 times greater than those of commercial gauges. The results also demonstrated that the gauge factor is small when the growth time of SWCNNs is lengthier, and the gauge factor is large when the line width of the serpentine pattern of SWCNNs is small.
本研究提出了一种新颖的柔性应变传感器,用于实时应变感应。应变感应材料是单壁碳纳米管网,使用醇催化化学气相沉积法生长,夹在两层 Parylene-C 之间,聚酰亚胺层作为感应表面。所有的微制造都与标准的 IC 工艺兼容。实验结果表明,所提出的应变传感器的应变系数大于 4.5,大约是商用应变计的 2 倍。结果还表明,当 SWCNNs 的生长时间较长时,应变系数较小,而当 SWCNNs 的蛇形图案的线宽较小时,应变系数较大。