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On the cross-well dynamics of a bi-stable composite plate.

机译:关于双稳态复合板的跨井动力学。

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摘要

Multi-stable composites are a novel type of composites capable of adopting multiple statically stable configurations. Due to the multi-stability property this type of composite material has been considered for several applications, particularly for morphing structures. The change of shape between stable states is achieved by a nonlinear mechanism known as snap-through. Most of the research done on these composites has focused on predicting the configuration after manufacture, its static characteristics and static actuation strategies to induce snap-through. However, these structures will operate subject to dynamic loads. Yet, very little work has been carried out to examine the dynamic behaviour of bi-stable composites. This paper focuses on the study of the cross-well dynamics of a bi-stable composite plate. A simple model previously derived for the dynamics confined to a single stable state is extended to. include cross-well dynamics. The rich dynamics are experimentally investigated, focusing on cross-well oscillations and the key dynamic features of snap-through. Numerical simulations are obtained and compared to the experimental results showing good agreement. In particular, experimentally observed characteristics suggesting chaotic oscillations for cross-well dynamics are captured well by the proposed model. The results herein could be used for implementing control strategies for both configuration morphing and undesired snap-through suppression of bi-stable composites.
机译:多稳态复合材料是能够采用多种静态稳定构型的新型复合材料。由于具有多重稳定性,这种复合材料已被考虑用于多种应用,尤其是用于变形结构。稳定状态之间的形状变化是通过一种称为快速对齐的非线性机制实现的。对这些复合材料所做的大多数研究都集中于预测制造后的构型,其静态特性和诱发快速击穿的静态致动策略。但是,这些结构将承受动态载荷。然而,进行双稳态复合材料动力学行为的研究很少。本文着重研究双稳态复合板的井间动力学。以前的动力学仅限于单个稳定状态的简单模型被扩展到。包括井间动力学。对丰富的动力学进行了实验研究,重点关注井间振荡和快速捕捉的关键动力学特征。获得了数值模拟,并与显示出良好一致性的实验结果进行了比较。尤其是,实验观察到的特征表明井间动力学的混沌振荡被所提出的模型很好地捕获了。本文的结果可用于实施控制策略,以实现双稳态复合材料的构形变形和不希望的快速抑制。

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