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Shape memory polymer hexachiral auxetic structures with tunable stiffness

机译:具有可调刚度的形状记忆聚合物六手性膨胀结构

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Planar auxetic structures have the potential to impact on a wide range of applications from deployable and morphing structures to spacefilling composite and medical treatments. The ability to fabricate auxetics from smart materials greatly enhances this facility by building in controllable actuation and deployment. A smart auxetic device can be compressed and fixed into a storage state. When deployment is required the device can be appropriately stimulated and the stored elastic energy is released, resulting in a marked structural expansion. Instead of using a conventional external actuator to drive deployment the material is made to undergo phase transition where one stimulus (e.g. heat) initiates a mechanical response. Here we show how smart material auxetics can be realized using a thermally responsive shape memory polymer composites. We show how a shape memory polymer auxetic hexachiral structure can be tailored to provide a tunable stiffness response in its fully deployed state by varying the angle of inter-hub connections, and yet is still able to undergo thermally stimulated deployment.
机译:平面膨胀结构可能会影响广泛的应用,从可展开的变形结构到空间填充复合材料和医学治疗。通过构建可控的致动和展开,从智能材料中制造出香气的能力大大增强了该功能。可以将智能辅助设备压缩并固定到存储状态。当需要展开时,可以适当地刺激该装置并释放存储的弹性能,从而导致明显的结构扩展。代替使用常规的外部致动器来驱动展开,而是使材料经历相变,在该相变中,一种刺激(例如,热)引发机械响应。在这里,我们展示了如何使用热响应形状记忆聚合物复合材料实现智能材料的膨胀。我们展示了如何通过改变轮毂之间的连接角度,来定制形状记忆聚合物膨胀型六手性结构,以在其完全展开状态下提供可调的刚度响应,并且仍然能够进行热刺激展开。

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