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Design optimization of dome actuators

机译:圆顶执行器的设计优化

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摘要

This paper reports the conceptual design, analysis, and modeling of the electromechanical behavior of dome actuators. The geometric parameters of the actuator (dome thickness, width, radius, and depth), poling direction, electric field, and material properties (elastic compliance, piezoelectric constants, and dielectric permittivity) have been taken into account in the modeling work. The results of the analysis indicate that a dome actuator with a tangentially alternating poling direction and electric field (Case C) exhibits much larger displacement and force responses than dome actuators with other poling directions and electric fields. The first mode of natural frequency of the Case C dome actuator also was investigated, and its predicted performance was compared with that of moonie and rainbow actuators. The findings of this research clearly demonstrate the merit of design optimization of electromechanical devices.
机译:本文报告了穹顶执行器的机电性能的概念设计,分析和建模。在建模工作中已考虑了执行器的几何参数(圆顶厚度,宽度,半径和深度),极化方向,电场和材料特性(弹性柔度,压电常数和介电常数)。分析结果表明,与切向交替的极化方向和电场(情况C)相比,穹顶作动器的位移和力响应要大得多,而极化方向和电场却不同。还研究了Case C球型促动器的固有频率的第一种模式,并将其预测性能与Moonie和Rainbow促动器的固有频率进行了比较。这项研究的结果清楚地证明了机电设备设计优化的优点。

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