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The working principle and excitation method of a step peristalsis piezoelectric actuator

机译:步进蠕动压电执行器的工作原理和激发方法

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A step peristalsis actuator using piezoelectric stacks is proposed, designed and analyzed. The proposed actuator contains four piezoelectric stacks located in U-shaped: the two horizontal piezoelectric stacks are used to push the runner, while the two vertical piezoelectric stacks are used to change the contact states between the two feet and the runner. And the working principle for bidirectional-linear-driving is discussed. According to the working principle, the exciting method is developed to obtain the sequence control signals of the piezoelectric stacks. It is found that the step peristalsis piezoelectric actuator can achieve the accuracy of nanometer and be used as a bidirectional actuator. At last, the driving power of the step peristalsis piezoelectric actuator is investigated by theoretical analysis and designed. At present, the proposed design can be used as a long-stroke, ultra-precision and bidirectional piezoelectric actuator.
机译:提出了一种使用压电堆叠的步骤蠕动执行器,设计和分析。所提出的执行器包含位于U形的四个压电叠层:两个水平压电堆叠用于推流器,而两个垂直压电堆用于改变两英尺和转轮之间的接触状态。讨论了双向线性驾驶的工作原理。根据工作原理,开发了激发方法以获得压电堆的序列控制信号。发现步骤蠕动压电致动器可以实现纳米的精度并用作双向执行器。最后,通过理论分析和设计,研究了步骤蠕动压电致动器的驱动力。目前,所提出的设计可以用作长冲程,超精密和双向压电致动器。

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