首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >MANUFACTURING AND MECHANICS-BASED CHARACTERIZATION OF MACRO FIBER COMPOSITE ACTUATORS
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MANUFACTURING AND MECHANICS-BASED CHARACTERIZATION OF MACRO FIBER COMPOSITE ACTUATORS

机译:宏纤维复合致动器的制造和基于机械的表征

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摘要

The use of piezoelectric ceramic materials for structural actuation is a fairly well developed practice that has found use in a wide variety of applications. However, just as advanced composites offer many benefits over traditional engineering materials for structural design, actuators that utilize the active properties of piezoelectric fibers can improve upon many of the limitations encountered with monolithic piezoceramic devices used to control structural dynamics. This paper discusses the Macro Fiber Composite (MFC) actuator, which utilizes piezoceramic fibers, for example, lead zirconate titanate (PZT), embedded in an epoxy matrix for structural actuation. An overview of the MFC assembly process is presented, followed by a cure kinetics model that describes the behavior of the thermosetting matrix. This empirical model is seen to agree closely with the experimental data. Lastly, a hybrid classical lamination theory is developed to predict the linear elastic properties of the MFC package as a function of the PZT fiber lamination angle.
机译:压电陶瓷材料用于结构致动的使用是相当成熟的实践,已发现其可用于多种应用中。但是,正如先进的复合材料在结构设计上比传统工程材料具有许多优势一样,利用压电纤维活性特性的执行器可以改善用于控制结构动力学的整体式压电陶瓷设备所遇到的许多局限性。本文讨论了宏纤维复合材料(MFC)驱动器,该驱动器利用压电陶瓷纤维(例如锆酸钛酸铅(PZT))嵌入环氧树脂基体中进行结构驱动。介绍了MFC组装过程的概述,然后介绍了描述热固性基质行为的固化动力学模型。该经验模型被认为与实验数据非常吻合。最后,发展了一种混合经典层压理论,以预测MFC包装的线性弹性特性随PZT纤维层压角度的变化而变化。

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