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Research on a multi-layer piezoelectric structure applied in beam as a sensor

机译:应用于梁式传感器的多层压电结构研究

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In this paper, a multi-layer piezoelectric structure (MPS) is designed as a sensor with multi-channel and high-output properties. It is bonded onto the surface of a cantilever, and then the FEM modeling and simulations are developed. The mathematical formulation of the model is based on the shear deformation beam theory because of the large thickness of MPS. Furthermore, the FEM model is obtained based on the Hamilton's principle and the finite element method. The effects of some key parameters such as the number of piezoelectric layers, the thickness of per piezoelectric patch and that of per adhesive layer are analyzed on the sensing property of the MPS. Finally, a contrast experiment is also finished. The results have shown that this novel piezoelectric structure has a clear sensing advantage. It is helpful for designing the piezoelectric balance sensor or the piezoelectric vibration energy harvesting structure.
机译:本文将多层压电结构(MPS)设计为具有多通道和高输出特性的传感器。将其粘结到悬臂的表面,然后进行有限元建模和仿真。由于MPS的厚度较大,因此该模型的数学公式基于剪切变形梁理论。此外,基于汉密尔顿原理和有限元方法获得了有限元模型。分析了一些关键参数的影响,例如压电层的数量,每个压电贴片的厚度和每个粘合层的厚度,对MPS的感测性能的影响。最后,对比实验也完成了。结果表明,这种新颖的压电结构具有明显的传感优势。这对设计压电平衡传感器或压电振动能量收集结构很有帮助。

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