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Optimal Design of Cymbal Stack Transducer in a Piezoelectric Linear Actuator by Finite Element Method : Energy Harvesting and Systems

机译:压电直线执行器Cy叠换能器的有限元优化设计:能量收集与系统。

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The optimal design of a piezoelectric linear actuator using parametric optimum method-based finite element method (FEM) was presented. First, the FEM model of the cymbal stack transducer was generated with its initial configuration. The structural parameters were chosen as the design variables and the displacement on the top surface of the transducer taken as the objective function. Second, the zero-order optimization method was chosen as the basic tool of the structural updating. The structural optimization scheme of the cymbal stack transducer was carried out based on ANSYS parametric design language (APDL). Finally, an example of dynamic response analysis was performed on the cymbal stack transducer to verify the structural optimization scheme. The results show that the displacement on the top surface is increased by 32.9% compared with the case of initial configuration.
机译:提出了基于参数最优方法的有限元方法(FEM)的压电线性致动器的优化设计。首先,以其初始配置生成the堆叠换能器的FEM模型。选择结构参数作为设计变量,并将换能器顶面上的位移作为目标函数。其次,选择零阶优化方法作为结构更新的基本工具。基于ANSYS参数化设计语言(APDL),进行了stack叠换能器的结构优化方案。最后,对the堆栈换能器进行了动态响应分析,以验证结构优化方案。结果表明,与初始配置相比,顶面上的位移增加了32.9%。

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