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Application of a Classical Lamination Theory Model to the Design of Piezoelectric Composite Unimorph Actuators

机译:经典分层理论模型在压电复合单压电晶片执行器设计中的应用

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摘要

This work presents the design, development, and characterization of unimorph-type laminated piezoelectric actuators. The actuators consist of a piezoelectric lead zirconate titanate (PZT) layer sandwiched between unidirectional Kevlar 49 and epoxy composite layers. Differential thermal expansion during processing places the ceramic plate in a state of residual compression and results in a curved actuator. Modified classical lamination theory (MCLT) (modified to include piezoelectricity) was used to design the actuators. Three layups were fabricated and characterized: [90/PZT/90/0], [90_2/PZT/90/0_2], and [90_3/PZT/90/0_3]. Results were compared to a commercially available unimorph-type actuator made from layers of metal, adhesive, and piezoelectric material. The classical lamination theory predictions were in good agreement with the measured response of the PZT composite actuators and provide a useful design tool for these actuators.
机译:这项工作介绍了单压电晶片型压电致动器的设计,开发和特性。致动器由夹在单向Kevlar 49和环氧复合材料层之间的压电锆钛酸铅(PZT)层组成。在加工过程中的热膨胀差使陶瓷板处于残余压缩状态,并导致弯曲的致动器。修改后的经典层压理论(MCLT)(修改为包括压电性)用于设计执行器。制作并表征了三个叠层:[90 / PZT / 90/0],[90_2 / PZT / 90 / 0_2]和[90_3 / PZT / 90 / 0_3]。将结果与由金属,粘合剂和压电材料制成的市售单压电晶片型致动器进行了比较。经典的叠层理论预测与PZT复合执行器的测量响应非常吻合,并为这些执行器提供了有用的设计工具。

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