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作 者:余煜玺[1] 韩滨 YU Yu-xi;HAN Bin(Fujian Key Laboratory of Advanced Materials,Department of Materials Science and Engineering,College of Materials,Xiamen University,Xiamen 361005,Fujian,China)
机构地区:[1]厦门大学材料学院材料科学与工程系福建省特种先进材料重点实验室
出 处:《材料工程》2020年第1期121-127,共7页Journal of Materials Engineering
基 金:国家自然科学基金(51675452);国防科技工业核动力技术创新中心专项科研项目(HDLCXZX-2019-ZH-025)
摘 要:以耐高温聚合物先驱体陶瓷(PDC-SiBCN)为温敏介质材料,金属铂作为谐振腔材料,并在陶瓷表面开槽形成共面天线,制备出集开槽天线与谐振器一体的无线无源温度传感器,实现温度信息的无线无源传输。结果表明:传感器的谐振频率随测试温度的升高呈单调递减变化,PDC-SiBCN陶瓷的介电常数随温度的升高而单调增加,其中热解温度为1000℃的传感器测试温度达1100℃,具有优异的耐高温性和介温特性。同一测试温度下传感器的谐振频率随直径的增大而减小,也随热解温度的升高而降低。通过对传感器的谐振频率-温度拟合曲线进行一阶偏导得到灵敏度方程,传感器在1100℃的高温下有较高的灵敏度。传感器具有良好的循环稳定性能,在室温下实际无线传输距离达到42 mm,当测试温度为1100℃时传输距离可达8 mm,可应用于高温恶劣环境下航空发动机的温度监控。The high temperature resistant polymer derived ceramic(PDC-SiBCN)was used as a temperature sensitive dielectric material,and metal platinum was used as a resonant cavity material,and a coplanar antenna was formed by slotting on the surface of the ceramic to fabricate a wireless passive temperature sensor integrating the slot antenna and the resonator.The sensor can realize the wireless passive transmission of temperature information.The results show that the resonant frequency of the sensor is declined monotonically with the increase of the testing temperature,the dielectric constant of PDC-SiBCN ceramic is increased monotonously with increasing temperature,and the sensor with a pyrolysis temperature of 1000℃is tested up to 1100℃,which has excellent high temperature resistance and dielectric temperature properties.At the same test temperature,the resonant frequency of the sensor is decreased with increasing diameter and also is reduced with increasing pyrolysis temperature.The sensitivity equation is obtained by performing a first-order partial derivative of the resonant frequency-temperature fitting curve of the sensor,and the sensor has a high sensitivity at a high temperature of 1100℃.The sensor has good cycle stability,and it has an actual wireless transmission distance of 42 mm at room temperature and a transmission distance of up to 8 mm when the testing temperature is 1100℃,which can be used for temperature monitoring of aero-engine in high temperature and harsh environments.
分 类 号:TB332[一般工业技术—材料科学与工程]
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