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首页> 外文期刊>Russian Journal of Nondestructive Testing >Simulation and Finite Element Analysis of Porous Piezoceramic Disk-Shaped Transducer with Plano-Concave Surface
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Simulation and Finite Element Analysis of Porous Piezoceramic Disk-Shaped Transducer with Plano-Concave Surface

机译:具有平面凹面的多孔压电杂质盘形换能器的仿真与有限元分析

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The paper investigates a disk-shaped piezoelectric transducer with plano-concave surface. Special form of the construction enhances the flexibility of the transducer and improves its effectiveness similar to the known transducers of Cymbal and Moonie types. The analysis of the transducer was performed using the finite element technologies and ANSYS finite element software. The influence of the porosity of the piezoceramic material of the transducer on its performance was studied both in static analysis and steady-state oscillations mode. The porosity of the piezoceramic material was taken into account by the effective properties of porous piezoceramic as a composite structure, which were calculated in numerical experiments on solving the homogenization problems by the effective moduli method and the finite element method.
机译:该纸张调查具有平面凹面的盘形压电换能器。 特殊形式的结构增强了换能器的灵活性,提高了与钹和Moonie类型的已知传感器相似的效果。 使用有限元技术和ANSYS有限元件软件进行换能器的分析。 在静态分析和稳态振荡模式下,研究了换能器的压电陶瓷材料的孔隙率对其性能的影响。 通过多孔压电陶瓷作为复合结构的有效性能考虑压电陶瓷材料的孔隙率,其在通过有效模液方法和有限元方法解决了求解均化问题的数值实验中。

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