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3D Printed Reversible Shape Changing Components with Stimuli Responsive Materials

机译:具有刺激响应材料的3D打印可逆形状变化组件

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The creation of reversibly-actuating components that alter their shapes in a controllable manner in response to environmental stimuli is a grand challenge in active materials, structures, and robotics. Here we demonstrate a new reversible shape-changing component design concept enabled by 3D printing two stimuli responsive polymers-shape memory polymers and hydrogels-in prescribed 3D architectures. This approach uses the swelling of a hydrogel as the driving force for the shape change, and the temperature-dependent modulus of a shape memory polymer to regulate the time of such shape change. Controlling the temperature and aqueous environment allows switching between two stable configurations - the structures are relatively stiff and can carry load in each - without any mechanical loading and unloading. Specific shape changing scenarios, e.g., based on bending, or twisting in prescribed directions, are enabled via the controlled interplay between the active materials and the 3D printed architectures. The physical phenomena are complex and nonintuitive, and so to help understand the interplay of geometric, material, and environmental stimuli parameters we develop 3D nonlinear finite element models. Finally, we create several 2D and 3D shape changing components that demonstrate the role of key parameters and illustrate the broad application potential of the proposed approach.
机译:响应于环境刺激以可控方式改变其形状的可逆驱动组件的创建是活性材料,结构和机器人技术中的巨大挑战。在这里,我们演示了通过在指定的3D体系结构中3D打印两种刺激响应性聚合物(形状记忆聚合物和水凝胶)而实现的新的可逆形变组件设计概念。该方法使用水凝胶的溶胀作为形状改变的驱动力,并使用形状记忆聚合物的温度依赖性模量来调节这种形状改变的时间。控制温度和水性环境允许在两种稳定的配置之间进行切换-结构相对较硬并且可以在每个结构中承载载荷-无需任何机械加载和卸载。通过活性材料和3D打印体系结构之间受控的相互作用,可以实现特定的形状更改方案,例如基于弯曲或在指定方向上的扭曲。物理现象是复杂且非直觉的,因此为了帮助理解几何,材料和环境刺激参数之间的相互作用,我们开发了3D非线性有限元模型。最后,我们创建了几个2D和3D形状更改组件,这些组件演示了关键参数的作用并说明了该方法的广泛应用潜力。

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