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Development of flexible ZnO thin film surface acoustic wave strain sensors on ultrathin glass substrates

机译:超薄玻璃基板上柔性ZnO薄膜表面声波应变传感器的研制

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Flexible surface acoustic wave (SAW) strain sensors made on ZnO/ultrathin glass (100 mu m) substrates have been developed. The sensitivity of the SAW strain sensors under different strain angles and annealing temperatures, as well as the mechanical stability, are investigated. It was shown that the thickness of ZnO has a strong effect on the sensitivity of the strain sensors, and thicker ZnO makes sensors with better performance. Thermal annealing at a temperature up to 200 degrees C also improves the sensitivity of the strain sensor significantly. The temperature coefficient of frequency remains unchanged under different strains, showing good thermal stability. A cyclic bending test with the strain varied between zero and 2000 mu epsilon exhibits good mechanical stability and reliability of SAW strain sensors. All the results demonstrate the great potential of flexible SAW strain sensors for flexible electronic applications.
机译:已经开发了在ZnO /超薄玻璃(100μm)基板上制造的柔性表面声波(SAW)应变传感器。研究了SAW应变传感器在不同应变角和退火温度下的灵敏度以及机械稳定性。结果表明,ZnO的厚度对应变传感器的灵敏度有很大的影响,而ZnO越厚,传感器的性能越好。在高达200摄氏度的温度下进行热退火也可以显着提高应变传感器的灵敏度。频率温度系数在不同应变下保持不变,显示出良好的热稳定性。应变在零和2000με之间变化的循环弯曲试验显示出良好的机械稳定性和SAW应变传感器的可靠性。所有结果证明了柔性SAW应变传感器在柔性电子应用中的巨大潜力。

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