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Control and characterization of a bistable laminate generated with piezoelectricity

机译:用压电产生的双稳态层压板的控制和表征

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摘要

Extensive research has been conducted on utilizing smart materials such as piezoelectric and shape memory alloy actuators to induce snap through of bistable structures for morphing applications. However, there has only been limited success in initiating snap through from both stable states due to the lack of actuation authority. A novel solution in the form of a piezoelectrically generated bistable laminate consisting of only macro fiber composites (MFC), allowing complete configuration control without any external assistance, is explored in detail here. Specifically, this paper presents the full analytical, computational, and experimental results of the laminate's design, geometry, bifurcation behavior, and snap through capability. By bonding two actuated MFCs in a [0(MFC)/90(MFC)] T layup and releasing the voltage post cure, piezoelectric strain anisotropy and the resulting in-plane residual stresses yield two statically stable states that are cylindrically shaped. The analytical model uses the Rayleigh-Ritz minimization of total potential energy and finite element analysis is implemented in MSC Nastran. The [0(MFC)/90(MFC)] T laminate is then manufactured and experimentally characterized for model validation. This paper demonstrates the adaptive laminate's unassisted forward and reverse snap through capability enabled by the efficiencies gained from simultaneously being the actuator and the primary structure.
机译:已经在利用诸如压电和形状记忆合金致动器的智能材料进行广泛的研究,以诱导用于变形应用的双稳态结构的捕捉。但是,由于缺乏致动权威,在从稳定状态开始,只有有限的成功。在这里,包括仅由宏观纤维复合材料(MFC)组成的压电产生的双稳态层压板形式的新溶液,允许在没有任何外部辅助的情况下进行完整的配置控制。具体而言,本文介绍了层压板的设计,几何形状,分叉行为,并通过能力的完整分析,计算和实验结果。通过在[0(MFC)/ 90(MFC)]中粘合两个致动的MFC] T叠加并释放电压后固化,压电应变各向异性和所得的面内残余应力产生两个圆柱形的静态稳定状态。分析模型使用总势能的Rayleigh-Ritz最小化,在MSC Nastran中实现了有限元分析。然后制造和实验表征模型验证的[0(MFC)/ 90(MFC)] T层压板。本文演示了自适应层压板的外向前和反向捕捉,通过同时成为执行器和主要结构所获得的效率使得能力。

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