Wang Chenying, Chen Luntao, Tian Bian, Jiang Zhuangde
School of Instrument Science and Technology, Xi'an Jiaotong University, Xi'an 710049, China.
State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Nanomaterials (Basel). 2023 Sep 3;13(17):2482. doi: 10.3390/nano13172482.
A wireless passive temperature sensor based on a metamaterial structure is proposed that is capable of measuring the temperature of moving parts. The sensor structure consists of an alumina ceramic substrate with a square metal double split-ring resonator fixed centrally on the ceramic substrate. Since the dielectric constant of the alumina ceramic substrate is temperature sensitive, the resonant frequency of the sensor is altered due to changes in temperature. A wireless antenna is used to detect the change in the resonant frequency of the sensor using a wireless antenna, thereby realizing temperature sensing operation of the sensor. The temperature sensitivity of the sensor is determined to be 205.22 kHz/°C with a strong linear response when tested over the temperature range of 25-135 °C, which is evident from the R2 being 0.995. Additionally, the frequency variation in this sensor is insensitive to the angle of rotation and can be used for temperature measurement of rotating parts. The sensor also has a distance warning functionality, which offers additional safety for the user by providing early warning signals when the heating equipment overheats after operating for extended durations.
提出了一种基于超材料结构的无线无源温度传感器,该传感器能够测量运动部件的温度。传感器结构由氧化铝陶瓷基板组成,在陶瓷基板中心固定有一个方形金属双裂环谐振器。由于氧化铝陶瓷基板的介电常数对温度敏感,传感器的谐振频率会因温度变化而改变。使用无线天线检测传感器谐振频率的变化,从而实现传感器的温度传感操作。在25 - 135°C的温度范围内进行测试时,传感器的温度灵敏度确定为205.22 kHz/°C,具有很强的线性响应,这从R2为0.995可以明显看出。此外,该传感器的频率变化对旋转角度不敏感,可用于旋转部件的温度测量。该传感器还具有距离警告功能,当加热设备长时间运行后过热时,通过提供预警信号为用户提供额外的安全保障。