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Dynamic control for morphing of bi-stable composites

机译:双稳态复合材料变形的动态控制

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Adaptive structures have been the focus of much research due to performance gains not possible to achieve using conventional designs. Within this context, the idea of morphing promises augmented capabilities in terms of manoeuvrability, fuel efficiency and the ability to perform dissimilar tasks in an optimal manner. To achieve morphing, materials capable of changing shape requiring minimum actuation are necessary. Bi-stable composites are a type of composite structures which have two statically stable configurations. This bi-stability property, resulting from locked in-plane residual stresses, has attracted considerable attention from the adaptive structure community for morphing structures as actuation is no required to hold each stable configuration. The change between stable states is physically realised as a jump phenomenon or snap-through, which is strongly non-linear in nature. Morphing strategies exploiting snap-through have been studied showing encouraging preliminary results. This article exploits the dynamic response of bi-stable composites as a means of augmenting the actuation for morphing control. A morphing strategy targeting modal frequencies leading to snap-through of the structure is successfully developed. This results in a full-state configuration control by inducing and reversing snap-through as desired. The strategy is tested on a specimen using Macro Fiber Composites as smart actuators validating the proposed concept.
机译:由于使用传统设计无法获得性能提升,因此自适应结构已成为许多研究的重点。在这种情况下,变形的想法在机动性,燃油效率和以最佳方式执行不同任务的能力方面有望增强功能。为了实现变形,需要能够以最小的驱动力改变形状的材料。双稳态复合材料是一种复合结构,具有两个静态稳定的配置。由于锁定平面内残余应力而产生的这种双稳定性质,已引起了自适应结构社区对结构变形的相当大的关注,因为不需要致动来保持每个稳定的构型。稳定状态之间的变化在物理上实现为跳跃现象或突跳现象,本质上是强烈非线性的。已经研究了利用捕捉的变形策略,显示出令人鼓舞的初步结果。本文利用双稳态复合材料的动态响应作为增强促动以控制变形的一种方法。成功开发了一种以模态频率为目标的变形策略,从而导致结构的快速捕捉。通过根据需要感应和反向捕捉,可以实现全状态配置控制。该策略在使用Macro Fiber Composites作为智能执行器的样本上进行了测试,验证了所提出的概念。

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