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Structural analysis of piezoelectric cantilever transducer for in-situ characteristic measurement of polymer gel

机译:聚合物凝胶原位特征测量压电悬臂换能器的结构分析

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Our previous study has proved that piezo-cantilever coated with temperature-responsive polymer gel can measure swelling ratio of the polymer in solution by piezo-impedance measuring technology. However, the sensitivity and accuracy of the piezo-cantilever transducer is related to the vibration modes actuated by the piezoelectric cell. The bending mode seems not available to work in solution as its amplitude is attenuated greatly and causes noise easily in solution. In this study, the longitudinal mode of piezo-cantilever transducer has been studied to detect physical changing due to the temperature-sensitive polymer gel. The impedance responses to variation of physical properties such as length, thickness and density of the polymer gel have been investigated. The results show that for a certain longitudinal mode, variation of length of the polymer can be neglected. The swelling ratio of the piezo-cantilever transducer is obtained theoretically. Finally. A new type of piezo-cantilever transducer is proposed that is more convenient in practice.
机译:我们之前的研究证明,涂有温度响应性聚合物凝胶的压电悬臂可以通过压电阻抗测量技术测量聚合物中聚合物的溶胀比。然而,压电 - 悬臂换能器的灵敏度和精度与压电电池致动的振动模式有关。弯曲模式似乎无法在解决方案中工作,因为它的幅度大大减弱并且在解决方案中容易引起噪音。在该研究中,已经研究了压电 - 悬臂换能器的纵向模式以检测由于温度敏感的聚合物凝胶引起的物理变化。研究了对诸如长度,厚度和密度的物理性质的变化的阻抗反应已经研究过聚合物凝胶的密度。结果表明,对于一定的纵向模式,可以忽略聚合物的长度的变化。理论上获得压电换能器的膨胀比。最后。提出了一种新型压电悬臂换能器,在实践中更方便。

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