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Design and Analysis of Piezoelectric Cantilever Based Vibration Sensor

机译:基于压电悬臂的振动传感器的设计与分析

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The vibration energy available abundantly in nature by various sources can be used for energy harvesting purpose and the vibration of machines can be used for condition monitoring of the machines. This paper presents the design and analysis of cantilever based piezoelectric vibration sensor. The design of the cantilever-based structure is done using Comsol Multiphysics and different parameters like deflection, stress, strain and voltage generated are analyzed. The dynamic response is also obtained to analyze deflections under the application of dynamic pressure at different modal frequencies. The vibration energy available from different vibration sources are sensed using this sensor to get the vibration signature. The simulated structure has natural frequency of approximately 56 Hz. The piezoelectric film sensor FS-2513P of similar dimensions (with Ag electrodes and protective layer) has natural frequency of 80 Hz. The Vibration source (Diesel engine) with vibration frequency 71.28 Hz generated the maximum voltage 2.45mV.
机译:自然界中各种来源可大量利用的振动能量可用于能量收集目的,而机器的振动可用于机器的状态监视。本文介绍了悬臂式压电振动传感器的设计与分析。基于悬臂的结构的设计使用Comsol Multiphysics完成,并分析了不同的参数,例如挠度,应力,应变和产生的电压。在不同的模态频率下,在动压力的作用下,还可以获得动态响应以分析挠度。使用此传感器可感测来自不同振动源的振动能量,以获取振动信号。模拟的结构具有大约56 Hz的固有频率。尺寸相似的压电薄膜传感器FS-2513P(带有Ag电极和保护层)具有80 Hz的固有频率。振动频率为71.28 Hz的振动源(柴油机)产生最大电压2.45mV。

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