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A Passive Pressure Sensor Fabricated by Post-Fire Metallization on Zirconia Ceramic for High-Temperature Applications

机译:火后金属化在高温氧化锆陶瓷上制造的被动压力传感器

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A high-temperature pressure sensor realized by the post-fire metallization on zirconia ceramic is presented. The pressure signal can be read out wirelessly through the magnetic coupling between the reader antenna and the sensor due to that the sensor is equivalent to an inductive-capacitive (LC) resonance circuit which has a pressure-sensitive resonance frequency. Considering the excellent mechanical properties in high-temperature environment, multilayered zirconia ceramic tapes were used to fabricate the pressure-sensitive structure. Owing to its low resistivity, sliver paste was chosen to form the electrical circuit via post-fire metallization, thereby enhancing the quality factor compared to sensors fabricated by cofiring with a high-melting-point metal such as platinum, tungsten or manganese. The design, fabrication, and experiments are demonstrated and discussed in detail. Experimental results showed that the sensor can operate at 600 °C with quite good coupling. Furthermore, the average sensitivity is as high as 790 kHz/bar within the measurement range between 0 and 1 Bar.
机译:提出了一种通过高温后氧化法在氧化锆陶瓷上实现的高温压力传感器。由于传感器等同于具有压敏谐振频率的电感电容(LC)谐振电路,因此可以通过读取器天线与传感器之间的磁耦合无线读取压力信号。考虑到高温环境下的优异机械性能,多层氧化锆陶瓷带被用于制造压敏结构。由于其电阻率低,因此选择了银浆糊以通过后烧金属化形成电路,从而与通过与高熔点金属(例如铂,钨或锰)共烧制成的传感器相比,提高了品质因数。设计,制造和实验都进行了详细的演示和讨论。实验结果表明,该传感器可以在600°C的温度下良好耦合地工作。此外,在0和1 Bar之间的测量范围内,平均灵敏度高达790 kHz / bar。

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