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Computational modeling and parametric study of a rotary actuator driven by piezoelectric composites

机译:压电复合材料驱动旋转执行器的计算建模和参数研究

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Abstract: An innovative actuation principle was introduced in a previous study to drive a rotary actuator by piezoelectric composite laminate. The driving element is a three layer laminated beam with piezoceramics sandwiched between two antisymmetric composite laminae. By taking advantage of the structural coupling, a rotary actuator similar to ultrasonic motors can be implemented. A prototype of the mentioned actuator has been fabricated. The objective of this study is to model this device by finite element method. A commercial finite element code, ANSYS, was employed to simulate the rotary actuator. The piezoelectric laminate and the rotor were modeled by solid brick elements and special constraint element was used to account for the contact between two separate bodies. Static and transient dynamic analyses were conducted to simulate the deformation and the angular motion of the rotary actuator, respectively. Parametric study was performed by modal and harmonic analyses to investigate the dynamic response of the driving laminate. The results of this study confirmed the proposed actuation principle and the developed computational model may be used for the optimization of future design.!8
机译:摘要:在先前的研究中介绍了一种创新的致动原理,以利用压电复合材料层压板驱动旋转致动器。驱动元件是三层层压梁,压电陶瓷夹在两个反对称复合层之间。通过利用结构耦合,可以实现类似于超声马达的旋转致动器。已经制造了所述致动器的原型。这项研究的目的是通过有限元方法对该设备进行建模。商业有限元代码ANSYS被用来模拟旋转执行器。压电层压板和转子是用实心砖单元建模的,并使用特殊的约束元素来说明两个单独的主体之间的接触。进行了静态和瞬态动态分析,分别模拟了旋转执行器的变形和角运动。通过模态和谐波分析进行参数研究,以研究驱动层压板的动力响应。这项研究的结果证实了所提出的驱动原理,并且所开发的计算模型可用于将来的设计优化!! 8

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