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Analysis of morphing, multi stable structures actuated by piezoelectric patches

机译:压电贴片驱动的变形,多稳定结构的分析

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摘要

In this article a novel morphing structure concept is studied using non-linear Finite Element Analysis (FEA). Bi-stable asymmetrical laminates can be snapped between two geometries through a buckling mechanism that is activated by an applied load. A piezoelectric Macro-Fibre Composite (MFC) actuator was chosen to provide this activation load. Bi-stable structures will maintain a given geometrical state without the need for a constant actuation force. FEA was used to predict the two stable geometries, to understand the buckling mechanism and to evaluate the feasibility of using MFC actuators for switching between states. Environmental effects like moisture absorption were also included in the analysis.
机译:在本文中,使用非线性有限元分析(FEA)研究了一种新颖的变形结构概念。双稳态不对称层压板可以通过屈曲机构卡在两个几何形状之间,屈曲机构由施加的载荷激活。选择压电宏观纤维复合材料(MFC)执行器来提供此激活负载。双稳态结构将保持给定的几何状态,而无需恒定的驱动力。 FEA用于预测两个稳定的几何形状,了解屈曲机理并评估使用MFC执行器在状态之间进行切换的可行性。分析中还包括诸如水分吸收的环境影响。

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