Dynamic response of piezoelectrically actuated bistable cross-ply laminates under oscillating impulse voltages

双稳态 材料科学 电压 脉冲(物理) 单层压电片 执行机构 变形 智能材料 压电 复合材料 工程类 光电子学 电气工程 计算机科学 物理 计算机视觉 量子力学
作者
B. Danish,P. M. Anilkumar,A. Haldar,B. N. Rao
出处
期刊:Mechanics of Advanced Materials and Structures [Taylor & Francis]
卷期号:: 1-21 被引量:8
标识
DOI:10.1080/15376494.2023.2283791
摘要

AbstractMultistable composite laminates are ideal candidates for morphing applications due to their ability to switch between multiple stable states with proper actuation mechanisms. Surface-bonded macro fiber composite (MFC) actuators to trigger snap-through between one stable shape to another by applying external voltages have attracted considerable attention recently. In this work, dynamic snap-through of bistable unsymmetric cross-ply laminate using MFC actuators under oscillating impulse voltages has been investigated. Both unimorph and bimorph laminate-MFC configurations are considered for the analysis. The stable equilibrium configurations of the MFC-actuated bistable laminate, considering the effects of MFC bondage, are discussed using the proposed finite element (FE) framework. Under the action of oscillating impulse voltages, the single-well and cross-well oscillations of the active bistable plate are analyzed in detail through time responses and phase portraits. The FE results show the advantage of actuating MFC layers through the oscillating impulse voltages as it leads to a reduction in the maximum snap-through voltage requirements.Keywords: Bistablecompositesdynamicsfinite elementsMFC actuatorssnap-through AcknowledgmentThe first author would like to acknowledge the Prime Minister Research Fellowship (PMRF) scheme for the research grant during his doctoral research.Disclosure statementThe authors declare no conflict of interest.
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