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A Novel Stick–Slip Piezoelectric Actuator Based on a Triangular Compliant Driving Mechanism

机译:基于三角形顺应驱动机构的新型粘滑压电执行器

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摘要

There is a growing demand for positioning actuators with a higher resolution, accuracy, speed, and driving force. Various piezoelectric actuators have been proposed to meet these requirements; however, they all have inherent limitations. This paper presents a novel high-performance piezoelectric actuator that can overcome the limitations of existing designs. It is based on the stick-slip actuation principle and makes use of coupling motions of the proposed triangular driving mechanism to generate a clamping action during the "stick" phase and a releasing action during the "slip" phase. Unlike existing driving mechanisms based on similar principles, the proposed actuator can employ its unique structure to amplify the clamping force and the related driving force by using a large design triangular angle. Apart from its superior performance in driving force, it is interestingly found that its driving speed performance also improves when the design angle is increased. Finite-element analysis and experiments are carried out to justify the superior performance of the proposed actuator. In comparison with existing actuator prototypes based on similar principles, a prototype of the proposed actuator, even driven with a lower input voltage, achieves an 11 times larger driving load and a 3 times higher free-load driving speed.
机译:对具有更高的分辨率,精度,速度和驱动力的定位执行器的需求不断增长。已经提出了各种压电致动器来满足这些要求。但是,它们都有固有的局限性。本文提出了一种新型的高性能压电致动器,可以克服现有设计的局限性。它基于粘滑操纵原理,并利用提出的三角驱动机构的耦合运动在“粘”阶段产生夹紧作用,而在“滑”阶段产生释放作用。与基于相似原理的现有驱动机构不同,所提出的致动器可以采用其独特的结构,通过使用较大的设计三角形角度来放大夹紧力和相关的驱动力。有趣的是,除了在驱动力方面的优异性能外,随着设计角度的增加,其行驶速度性能也得到了改善。进行了有限元分析和实验以证明所提出的执行器具有优越的性能。与基于类似原理的现有执行器原型相比,所提出的执行器原型即使以较低的输入电压进行驱动,也可实现11倍的驱动负载和3倍的空载驱动速度。

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