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Finite element modeling, characterization, and optimization design for the polymer-typed capacitive micro-arrayed ultrasonic transducer

机译:聚合物型电容微阵列超声换能器的有限元建模,表征和优化设计

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摘要

This study constructs a two-dimensional axisymmetric finite element model (FEM) of the polymer-typed capacitive micromachined ultrasonic transducers (P-CMUT). The electromechanical FE model is created using the APDL programming technique. The ANSYS multiphysics solver with sequential approach and the Physics environment files are applied for the solution of the electrostatic-structural coupled-field analysis. Simulations are performed to investigate the operational characteristics, such as collapse voltage and the resonant frequency of the P-CMUT. The numerical results are found to be in good agreement with experimental observation. Having confirmed validity and accuracy of the proposed numerical model, the study of influence of each defined parameter on the collapse voltage and resonant frequency of the P-CMUT are also presented. To solve some conflict problems taken place in diverse physical fields, an integrated multi-objective design method involving electrical and mechanical characterization is developed to optimize the geometric parameters and material properties of the P-CMUT. The optimization search routine conducted using the genetic algorithm (GA) is connected with the commercial FEM software ANSYS to obtain the best design variable using multi-objective functions. The results show that the optimal parameter values satisfy the conflicting objectives of the design procedures, namely to minimize the collapse voltage while simultaneously maintaining a high resonant frequency. Overall, the presented results confirm that the combined FEM/GA optimization approach provides an efficient and versatile means for optimization design of the P-CMUT.
机译:本研究构建了聚合物型电容式微加工超声换能器(P-CMUT)的二维轴对称有限元模型(FEM)。机电有限元模型是使用APDL编程技术创建的。应用顺序方法的ANSYS多物理场求解器和物理环境文件被用于静电-结构耦合场分析的解决方案。进行仿真以研究工作特性,例如崩溃电压和P-CMUT的谐振频率。数值结果与实验观察结果吻合良好。在确认了所提出数值模型的有效性和准确性之后,还提出了每个定义参数对P-CMUT的崩溃电压和谐振频率的影响的研究。为了解决在不同物理领域中发生的一些冲突问题,开发了一种包含电气和机械特性的集成多目标设计方法,以优化P-CMUT的几何参数和材料特性。使用遗传算法(GA)进行的优化搜索例程与商用FEM软件ANSYS连接,以使用多目标函数获得最佳设计变量。结果表明,最佳参数值满足了设计程序的冲突目标,即在保持高谐振频率的同时,最小化崩溃电压。总体而言,提出的结果证实了组合的FEM / GA优化方法为P-CMUT的优化设计提供了一种有效且通用的方法。

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