Weng Shun, Zhang Jingqi, Gao Ke, Zhu Hongping, Peng Tingjun
School of Civil and Hydraulic Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.
Hubei Key Laboratory of Control Structure, Huazhong University of Science and Technology, Wuhan 430074, China.
Sensors (Basel). 2024 Jul 6;24(13):4388. doi: 10.3390/s24134388.
In the field of wireless strain monitoring, it is difficult for the traditional metal-made antenna sensor to conform well with steel structures and monitor large strain deformation. To solve this problem, this study proposes a flexible antenna strain sensor based on a ductile graphene film, which features a 6.7% elongation at break and flexibility due to the microscopic wrinkle structure and layered stacking structure of the graphene film. Because of the use of eccentric embedding in the feeding form, the sensor can be miniaturized and can simultaneously monitor strain in two directions. The sensing mechanism of the antenna is analyzed using a void model, and an antenna is designed based on operating frequencies of 3 GHz and 3.5 GHz. The embedding size is optimized using a Smith chart and impedance matching principle. Both the simulation and experimental results verify that the resonant frequency and strain magnitude are linearly inversely proportional. The experimental results show that the strain sensitivity is 1.752 kHz/με along the geometric length and 1.780 kHz/με along the width, with correlation coefficients of 0.99173 and 0.99295, respectively.
在无线应变监测领域,传统的金属天线传感器很难与钢结构良好贴合,难以监测大应变变形。为解决这一问题,本研究提出一种基于韧性石墨烯薄膜的柔性天线应变传感器,由于石墨烯薄膜的微观褶皱结构和层状堆叠结构,该传感器的断裂伸长率为6.7%,具有柔韧性。由于采用偏心嵌入馈电形式,该传感器可以实现小型化,并且能够同时监测两个方向的应变。利用空洞模型分析了天线的传感机制,并基于3GHz和3.5GHz的工作频率设计了天线。利用史密斯圆图和阻抗匹配原理对嵌入尺寸进行了优化。仿真和实验结果均验证了谐振频率与应变大小呈线性反比关系。实验结果表明,沿几何长度方向的应变灵敏度为1.752kHz/με,沿宽度方向的应变灵敏度为1.780kHz/με,相关系数分别为0.99173和0.99295。