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Development of a Piezoelectric Induced-Strain Actuator with an Innovative Internal Amplifying Structure

机译:具有新型内部放大结构的压电感应应变致动器的开发

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The development of a novel piezoelectric induced-strain actuator possessing an innovative internal amplifying structure is presented in this paper. This actuator basically consists of a metal frame and two lead zirconate titanate (PZT) piezoelectric ceramic patches. The metal frame is bent to form an open trapezoid, where its center part has a specially designed saddle-like unit and its slanting legs are attached with PZT patches. The saddle-like unit has an amplifying-lever mechanism at the corners to increase the displacement output of the whole actuator even its legs are mechanically clamped. When an electric field is applied across the thickness of the PZT patches, the patches induce deformations on the whole actuator through the piezoelectric d_(31) effect. The saddle-like unit can relax the constraints at the joints between the unit and the legs by stretching itself during bending. Piezoelectric finite element analysis is used to maximize the work output of displacement and blocked force of the actuator under different geometric parameters. The results are in good agreement with those obtained from quasi-static measurements, showing that the actuator has work output comparable to and larger than the existing induced-strain actuators (e.g., THUNDER) under fixed mounting conditions. Therefore, the actuator has great potential for use in various practical smart structures and integrated systems, including active-passive vibration isolation and micro-positioning.
机译:本文介绍了具有新型内部放大结构的新型压电感应应变致动器的开发。该执行器主要由金属框架和两个锆钛酸铅(PZT)压电陶瓷贴片组成。金属框架弯曲形成一个开放的梯形,其中心部分有一个特别设计的鞍状单元,其倾斜的腿上装有PZT贴片。鞍状单元在拐角处具有放大杆机构,以增加整个执行器的位移输出,即使其腿部被机械夹紧。当在PZT贴片的整个厚度上施加电场时,这些贴片会通过压电d_(31)效应在整个执行器上引起变形。鞍状单元可以通过在弯曲过程中自身拉伸来放松单元和腿之间的连接处的约束。压电有限元分析用于最大化不同几何参数下执行器的位移和阻塞力的功输出。结果与从准静态测量获得的结果非常吻合,表明在固定安装条件下,执行器的工作输出可与现有的感应应变执行器(例如THUNDER)相比并更大。因此,该执行器具有很大的潜力,可用于各种实用的智能结构和集成系统,包括主动-被动振动隔离和微定位。

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